Publications

Combining the hybrid mimetic mixed method with the Scharfetter-Gummel scheme for magnetised transport in plasmas

H.M. Cheng, J. ten Thije Boonkkamp, J. Janssen, D. Mihailova and J. van Dijk

Partial Differential Equations and Applications, Springer

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Assessment of the suitability of the chemical reaction pathway algorithm as a reduction method for plasma chemistry

S. Tadayon Mousavi, J. G. M. Gulpen, W. A. A. D. Graef, P. M. J. Koelman, E. A. D. Carbone and J. van Dijk (2022)

Journal of Physics D: Applied Physics

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Reliability Investigation of BiCGStab and IDR Solvers for the Advection-Diffusion-Reaction Equation

C. E. M. Schoutrop, J. H. M. ten Thije Boonkkamp, J. van Dijk (2022)

Communications in Computational Physics, 32(1), 156-188.

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Numerical profile correction of microwave cavity resonance spectroscopy measurements of the electron density in low-pressure discharges

T. J. A. Staps, B. Platier, D. Mihailova, P. Meijaard, J. Beckers (2021)

Review of Scientific Instruments. 92(9):093504, DOI:10.1063/5.0054851

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Accelerating simulations of electromagnetic waves in hot, magnetized fusion plasmas

R. H. S. Bude, D. van Eester, J. van Dijk, R. J. E. Jaspers, A. B. Smolders (2021)

Plasma Physics and Controlled Fusion. 63(3):035014, DOI: 10.1088/1361-6587/abd619

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Effect of anisotropic scattering for rotational collisions on electron transport parameters in CO

L. Vialetto, A. Ben Moussa, J. van Dijk, S. Longo, P. Diomede, V. Guerra, L. L. Alves (2021)

Plasma Sources Science and Technology. 30(7):075001, DOI: 10.1088/1361-6595/ac0a4d

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Multicomponent transport in plasmas; exploiting stoichiometry

C. Schoutrop, J. van Dijk, J. ten Thije Boonkkamp (2021)

Journal of Computational Physics. 428(25):109979, DOI: 10.1016/j.jcp.2020.109979

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Two-temperature balance equations implementation, numerical validation and application to H2O–He microwave induced plasmas

S. Tadayon Mousavi, E. A. D. Carbone, A. J. B. Wolf, W. A. Bongers, J. van Dijk (2021)

Plasma Sources Science and Technology, 30(7):075007, DOI: 10.1088/1361-6595/ac0a44

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Uncertainty analysis with a reduced set of input uncertainties selected using pathway analysis

P. Koelman, D. Yordanova, W. Graef, S. Tadayon Mousavi, J. van Dijk (2019)

Plasma Sources Science and Technology, 28(3):035020, DOI 10.1088/1361-6595/ab0738

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Comparison of six simulation codes for positive streamers in air

B. Bagheri, J. Teunissen, U. Ebert, M.M. Becker, S. Chen, O. Ducasse, O. Eichwald, D. Loffhagen, A. Luque, D. Mihailova, J.M. Plewa, J. van Dijk and M. Yousfi (2018)

Plasma Sources Science and Technology, 27(9):095002, DOI: 10.1088/1361-6595/aad768

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Numerical simulation of atmospheric-pressure 200 kHz/13.56 MHz dual-frequency dielectric barrier discharges

Y. Liu, K. van 't Veer, F.J.J. Peeters, D.B. Mihailova, J. van Dijk, S. A. Starostin, M.C.M. van de Sanden, H.W. de Vries (2018)

Plasma Sources Science and Technology, 27(10):105016, DOI: 10.1088/1361-6595/aae555

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A comprehensive chemical model for the splitting of CO2 in non-equilibrium Plasmas

Koelman, P.M.J., Heijkers, S., Tadayon Mousavi, S., Graef, W.A.A.D., Mihailova, D.B., Kozak, T., Bogaerts, A., van Dijk, J. (2017)

Plasma Processes and Polymers, 14(4-5):1600155, DOI: 10.1002/ppap.201600155

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Modeling of diffusive plasmas in local thermodynamic equilibrium with integral constraints: application to mercury-free high pressure discharge lamp mixtures

Janssen, J.F.J., Suijker, J.L.G., Peerenboom, K.S.C., van Dijk, J. (2017)

Journal of Physics D: Applied Physics, 50(8):085601, DOI: 10.1088/1361-6463/50/8/085601

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Understanding microwave surface-wave sustained plasmas at intermediate pressure by 2D modeling and experiments

Georgieva, V., Berthelot, A., Silva, T., Kolev, S., Graef, W., Britun, N., Chen, Guoxing, van der Mullen, J., Godfroid, T., Mihailova, D., van Dijk, J., Snyders, R., Bogaerts, A., Delplancke-Ogletree, M.P. (2017)

Plasma Processes and Polymers, DOI: 10.1002/ppap.201600185

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A computational analysis of the vibrational levels of molecular oxygen in low-pressure stationary and transient radio-frequency oxygen plasma

Kemaneci, E., Booth, J.P., Chabert, P., van Dijk, J., Mussenbrock, T. and Brinkmann, R.P. (2016)

Plasma Sources Science and Technology, 25(2), 025025

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Studying complex chemistries using PLASIMO's global model

Koelman, P.M.J., Mousavi, S. Tadayon, Perillo, R., Graef, W.A.A.D., Mihailova, D.B. and van Dijk, J. (2016)

Journal of Physics: Conference Series, 682(1), 012034

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Simplifying plasma chemistry via ILDM

Rehman, T., Kemaneci, E., Graef, W. and Van Dijk, J. (2016)

Journal of Physics: Conference Series, 682(1), 012035

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Spatio-temporal dynamics of a pulsed microwave argon plasma: ignition and afterglow

Carbone E.A.D., Sadeghi N., Vos E.G.P., Hubner S., Veldhuizen E.M. van, Dijk J. van, Nijdam S. and Kroesen, G.M.W. (2015)

Plasma Sources Science and Technology, 24(1),015015

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Experimental evidence of resonant energy collisional transfers between argon 1s and 2p states and ground state H atoms by laser collisional induced fluorescence

Carbone E.A.D., Dijk J. van and Kroesen G.M.W. (2015)

Plasma Sources Science and Technology, 24, 025036-1/10

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The dominant pathways for the conversion of methane into oxygenates and syngas in an atmospheric pressure dielectric barrier discharge

De Bie C., Dijk J.van, and Bogaerts A. (2015)

Journal of Physical Chemistry C, 119(39), 22331-22350

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Modelling of an intermediate pressure microwave oxygen discharge reactor: from stationary two-dimensional to time-dependent global (volume-averaged) plasma models

Kemaneci E.H., Carbone E.A.D., Jimenez Diaz M., Graef W.A.A.D., Rahimi S., Dijk J. van, and Kroesen G.M.W. (2015)

Journal of Physics D: Applied Physics, 48(43), 435203

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A conservative multicomponent diffusion algorithm for ambipolar plasma flows in local thermodynamic equilibrium

Peerenboom K.S.C., Boxtel J. van, Janssen, J.F.J. and Dijk J. van. (2014)

Journal of Physics D: Applied Physics, 47(2), 425202

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Modelling of Low Temperature Plasma for Surface and Airborne Decontamination

Mihailova D.B., Dijk J. van, Hagelaar G.J.M., Belenguer P. and Guillot P. (2014)

IEEE Transactions on Plasma Science, 42(10), 2760

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Global (volume-averaged) model of inductively coupled chlorine plasma: Influence of Cl wall recombination and external heating on continuous and pulse-modulated plasmas

Kemaneci E., Carbone E., Booth J-P, Graef W., Dijk J. van and Kroesen G.M.W. (2014)

Plasma Sources Science and Technology, 23, 045002

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Monte Carlo simulation of a sputtering hollow-cathode discharge for laser applications

S. Karatodorov, D. Mihailova, J. van Dijk, J. van der Mullen and M. Grozeva. (2014)

Journal of Physics: Conference Series, 516, 012019

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A two-dimensional modelling study of a coaxial plasma waveguide

Rahimi S., Jimenez-Diaz M., Hubner S., Kemaneci E.H., Mullen J.J.A.M. van der and Dijk J. van. (2014)

Journal of Physics D: Applied Physics, 47, 125204

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A non-equilibrium simulation of thermal constriction in a cascaded arc hydrogen plasma

Peerenboom K.S.C., Dijk J. van, Goedheer W.J. and Kroesen G.M.W. (2014)

Plasma Sources Science and Technology, 23, 025003

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Numerical investigation on the replacement of mercury by indium iodide in high-intensity discharge lamps

Gnybida M., Janssen J.F.J., Dijk J. van, Suijker J.L.G., Peerenboom K.S.C., Rijke A.J., Gendre M. and Kroesen G.M.W. (2014)

Journal of Physics D: Applied Physics, 47, 125201

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Efficient simulation of drift-diffusive discharges: application of the 'complete flux scheme'

Liu, L., Mihailova, D.B., Dijk, J. van and Thije Boonkkamp, J.H.M. ten (2014)

Plasma Sources Science and Technology, 23(1), 015023

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On the atomic line profiles in high pressure plasmas

Janssen J.F.J., Gnybida M., Suijker J.L.G., Rijke A.J. and Dijk J. van (2013)

Journal of Applied Physics, 114, 183301

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Effects of magnetization on an expanding high-enthalpy plasma jet in argon

Peerenboom K.S.C., Dijk J. van, Goedheer W.J. and Kroesen G.M.W. (2013)

Plasma Sources Science and Technology, 22(2), 1-10

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The Complete Flux Scheme: error analysis and application to plasma simulation

Liu L., Dijk J. van, Thije Boonkkamp J.H.M. ten, Mihailova D.B. and Mullen J.J.A.M. van der (2013)

Journal of Computational and Applied Mathematics, 250, 229-243

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Geometrical features in longitudinal sputtering hollow cathode discharges for laser applications

Mihailova D.B., Dijk J. van, Hagelaar G.J.M., Karatodorov S., Zahariev P., Grozeva M. and Mullen J.J.A.M. van der (2012)

Journal of Physics D: Applied Physics, 45(16), 1-10

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A two-dimensional Plasimo multiphysics model for the plasma - electromagnetic interaction in surface wave discharges: the surfatron source

Jimenez-Diaz M., Carbone E.A.D., Dijk J. van, and Mullen J.J.A.M. van der (2012)

Journal of Physics D: Applied Physics, 45(33), 335204

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Monte Carlo simulation of electron kinetics in a hollow cathode discharge

Karatodorov S, Mihailova D. B., Dijk J. van, Mullen J.J.A.M. van der and Grozeva M (2012)

Journal of Physics: Conference Series, 356(1), 012043

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Extension of the complete flux scheme to systems of conservation laws

Thije Boonkkamp J.H.M. ten, Dijk J. van, Liu L. and Peerenboom K.S.C. (2012)

Journal of Scientific Computing, 53(3), 552-568

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Investigation of a pulsed xenon discharge at medium pressure

Gnybida M., Uhrlandt D. and Loffhagen D. (2012)

Journal of Physics D: Applied Physics, 45(19), 1-12

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Driving frequency dependence of capacitively coupled plasmas in atmospheric argon

Atanasova M., Sobota A., Brok W.J.M., Degrez G. and Mullen J.J.A.M. van der (2012)

Journal of Physics D: Applied Physics, 45(33), 335201-1/88

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Modelling of an RF plasma shower

Atanasova M., Carbone E.A.D., Mihailova D.B., Benova E., Degrez G. and Mullen J.J.A.M. van der (2012)

Journal of Physics D: Applied Physics, 45(14), 145202-1/11

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Effect of remote field electromagnetic boundary conditions on microwave-induced plasma torches

Jimenez-Diaz M., Dijk J. van and Mullen J.J.A.M. van der (2011)

Journal of Physics D: Applied Physics, 44(16), 165203-1/15

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Fluid modeling of the conversion of methane into higher hydrocarbons in an atmospheric pressure dielectric barrier discharge

Bie C. de, Verheyde B., Martens T., Dijk J. van, Paulussen S. and Bogaerts A. (2011)

Plasma Processes and Polymers, 8(11), 1033-1058

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Dielectric barrier discharges used for the conversion of greenhouse gases: modeling the plasma chemistry by fluid simulations

Bie C. de, Martens T., Dijk J. van, Paulussen S., Verheyde B., Corthals S. and Bogaerts A. (2011)

Plasma Sources Science and Technology, 20(2), 024008-1/11

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Two-dimensional modeling of the active species flow generated by an atmospheric plasma jet

Atanasova M., Carbone E.A.D., Mihailova D.B., Dijk J. van, Mullen J.J.A.M. van der, Benova E. and Degrez, G. (2011)

IEEE Transactions on Plasma Science, 39(11), 2348-2349

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Investigation of the gas flow effect on an atmospheric pressure RF plasma torch.

Atanasova M., Mihailova D.B., Carbone E.A.D., Dijk J. van, Mullen J.J.A.M. van der, Benova E. and Degrez G. (2011)

Journal of Physics: Conference Series, 275(1), 012012-1/7.

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Towards a reduced chemistry module of a He-Ar-Cu hollow cathode discharge

Mihailova D.B., Dijk J. van, Grozeva M., Degrez G. and Mullen J.J.A.M. van der (2011)

Journal of Physics D: Applied Physics, 44(19), 194001-1/9

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Ac breakdown in near-atmospheric pressure noble gases: II. Simulations

Sobota A., Dijk J. van and Haverlag M. (2011)

Journal of Physics D: Applied Physics, 44(22), 224003-1/13

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Mass conservative finite volume discretization of the continuity equations in multi-component mixtures

Peerenboom K.S.C., Dijk J. van, Thije Boonkkamp J.H.M. ten, Liu L., Goedheer W.J. and Mullen J.J.A.M. van der (2011)

Journal of Computational Physics, 230(9), 3525-3537

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On the ambipolar constraint in multi-component diffusion problems

Peerenboom K.S.C., Dijk J. van, Goedheer W.J. and Mullen J.J.A.M. van der (2011)

Journal of Computational Physics, 230(10), 3651-3655

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A finite volume model for multi-component diffusion in magnetically confined plasmas

Peerenboom K.S.C., Dijk J. van, Goedheer W.J., Degrez G. and Mullen J.J.A.M. van der (2011)

Journal of Physics D: Applied Physics, 44(19), 194006-1/8

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A hollow cathode discharge for laser applications: influence of the cathode length

Mihailova D.B., Dijk J. van, Grozeva M., Hagelaar G.J.M. and Mullen, J.J.A.M. van der (2010).

Journal of Physics D: Applied Physics, 43(14), 145203-1/9

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Analytical model of a longitudinal hollow cathode discharge

Hagelaar G.J.M., Mihailova D.B. and Dijk J. van (2010)

Journal of Physics D: Applied Physics, 43(46), 465204-1/11

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Integral simulation of the creation and expansion of a transonic argon plasma

Peerenboom K.S.C., Goedheer W.J., Dijk J. van and Mullen J.J.A.M. van der (2010)

Plasma Sources Science and Technology, 19(2), 025009-1/9

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The role of metastables in the formation of an argon discharge in a two-pin geometry

Sobota A., Manders F., Veldhuizen E.M. van, Dijk J. van and Haverlag M. (2010)

IEEE Transactions on Plasma Science, 38(9), 2289-2299

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Dust particle current in the presence of an external electric field

Dubinova A.A., Schram P.P.J.M. and Dijk J. van (2010)

Journal of Physics A: Mathematical and Theoretical, 43(36), 365501-1/10

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Pulse shape influence on the atmospheric barrier discharge

Martens T., Bogaerts A. and Dijk J. van (2010)

Applied Physics Letters, 96(13), 131503-1/3

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The influence of impurities on the performance of the dielectric barrier discharge

Martens T., Bogaerts A., Brok W.J.M. and Dijk J. van (2010)

Applied Physics Letters, 96(9), 091501-1/3

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Theoretical characterization of an atmospheric pressure glow discharge used for analytical spectrometry

Martens T., Mihailova D.B., Dijk J. van and Bogaerts A. (2009)

Analytical Chemistry, 81(21), 9096-9108

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On the regime transitions during the formation of an atmospheric pressure dielectric barrier glow discharge

Martens T., Brok W.J.M., Dijk J. van and Bogaerts A. (2009)

Journal of Physics D: Applied Physics, 42(12), 122022-1/5

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Fluid modelling of an atmospheric pressure dielectric barrier discharge in cylindrical geometry

Petrovic D., Martens T., Dijk J. van, Brok W.J.M. and Bogaerts A. (2009)

Journal of Physics D: Applied Physics, 42(20), 205206-1/12

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Plasma modelling and numerical simulation

Dijk J. van, Kroesen G.M.W. and Bogaerts A. (2009)

Journal of Physics D: Applied Physics, 42(19), 190301-1/14

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The plasma modelling toolkit Plasimo

Dijk J. van, Peerenboom K.S.C., Jimenez-Diaz M., Mihailova D.B. and Mullen J.J.A.M. van der (2009)

Journal of Physics D: Applied Physics, 42(19), 194012-1/14

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A flexible platform for simulations of sputtering hollow cathode discharges for laser applications

Mihailova D.B., Grozeva M., Hagelaar G.J.M., Dijk J. van, Brok W.J.M. and Mullen J.J.A.M. van der (2008)

Journal of Physics D: Applied Physics, 41(24), 245202-1/10

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A model for additive transport in metal halide lamps containing mercury and dysprosium tri-iodide

Beks M.L., Haverlag M. and Mullen J.J.A.M. van der (2008)

Journal of Physics D: Applied Physics, 41(12), 125209-1/9

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Competition between convection and diffusion in a metal halide lamp, investigated by numerical simulations and imaging laser absorption spectroscopy

Beks M.L., Flikweert A.J., Nimalasuriya T., Stoffels W.W. and Mullen J.J.A.M. van der (2008)

Journal of Physics D: Applied Physics, 41(14), 144025-1/9

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The dominant role of impurities in the composition of high pressure noble gas plasmas

Martens T., Bogaerts A., Brok W.J.M. and Dijk J. van (2008)

Applied Physics Letters, 92(4), 041504-1/3

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Modeling of a dielectric barrier discharge used as a flowing chemical reactor

Petrovic D., Martens T., Dijk J. van, Brok W.J.M. and Bogaerts A. (2008)

Journal of Physics: Conference Series, 133(1), 012023-1/8

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Surface ionization wave in a plasma focus-like model device

Yordanov V., Blagoev A., Ivanova-Stanik I., Veldhuizen E.M. van, Nijdam S., Dijk J. van and Mullen J.J.A.M. van der (2008)

Journal of Physics D: Applied Physics, 41(21), 215208-1/7

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A study on the effects of geometry on demixing in metal-halide lamps

Beks M.L., Dijk J. van, Hartgers A. and Mullen J.J.A.M. van der (2007)

IEEE Transactions on Plasma Science, 35(5), 1335-1340

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Model study of DC ignition of fluorescent tubes

Brok W.J.M., Gendre M.F. and Mullen J.J.A.M. van der (2007)

Journal of Physics D: Applied Physics, 40(1), 156-162

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Numerical description of high frequency ignition of fluorescent tubes

Brok W.J.M., Gendre M.F., Haverlag M. and Mullen J.J.A.M. van der (2007)

Journal of Physics D: Applied Physics, 40(13), 3931-3936

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Color segregation in metal-halide lamps: Experimental and numerical investigations

Brok W.J.M., Nimalasuriya T., Hartgers A., Beks M.L., Haverlag M., Stoffels W.W. and Mullen J.J.A.M. van der (2007)

High Temperature Material Processes, 11(3), 443-454

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Numerical description of pulsed breakdown between parabolic electrodes

Brok W.J.M., Wagenaars E., Dijk J. van and Mullen J.J.A.M. van der (2007)

IEEE Trans. on Plasma Science, 35(5), 1325-1334

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Modeling of pulsed capillary discharge waveguides using a non-lte approach

Broks B.H.P. and Mullen J.J.A.M. van der (2007)

High Temperature Material Processes, 11(4), 585-592

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Modeling of a square pulsed capillary discharge waveguide for interferometry measurements

Broks B.H.P., Dijk W. van, Mullen J.J.A.M. van der, Gonsalves A.J., Rowlands-Rees T.P. and Hooker S.M. (2007)

Physics of Plasmas, 14(2), 023501-1/8

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Deviations from the local field approximation in negative streamer heads

Li C., Brok W.J.M., Ebert U.M. and Mullen J.J.A.M. van der (2007)

J. Appl. Phys., 101(12):123305

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Modeling study on the influence of the pressure on a dielectric barrier discharge microplasma

Martens T., Bogaerts A., Brok W.J.M. and Mullen J.J.A.M. van der (2007)

Journal of Analytical Atomic Spectrometry, 22(9), 1033-1042

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Computer simulations of a dielectric barrier discharge used for analytical spectrometry

Martens T., Bogaerts A., Brok W.J.M. and Dijk J. van (2007)

Anal. Bioanal. Chem., Published online

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Model study of DC ignition of fluorescent tubes

W. J. M. Brok, M. F. Gendre, and J. J. A. M. van der Mullen (2007)

J. Phys. D: Appl. Phys., 40(1):156-162

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Colour segregation in metal-halide lamps: experimental and numerical investigations

W. J. M. Brok, T. Nimalasuriya, A. Hartgers, M. L. Beks, M. Haverlag, W. W. Stoffels, and J. J. A. M. van der Mullen (2006)

High Temp. Mat. Processes, 10(4):571-582

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Kinetic simulation of an extreme ultraviolet radiation driven plasma near a multilayer mirror

M. H. L. van der Velden, W. J. M. Brok, J. J. A. M van der Mullen, and V. Banine (2006)

J. Appl. Phys., 100(7):073303

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Study of a pulsed capillary discharge waveguide with a modulated radius

B. H. P. Broks, J. van Dijk, H. M. J. Bastiaens, K. J. Boller, and J. J. A. M. van der Mullen (2006)

J. Phys. D: Appl. Phys., 39:2384-2390

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Parameter study of a pulsed capillary discharge waveguide

B. H. P. Broks, W. van Dijk, and J. J. A. M. van der Mullen (2006)

J. Phys. D: Appl. Phys., 39:2377-2383

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Theoretical investigation of a photoconductively switched high-voltage spark gap

B. H. P. Broks, J. Hendriks, W. J. M. Brok, G. J. H. Brussaard, and J. J. A. M. van der Mullen (2006)

J. Appl. Phys., 99(12):0123302

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Particle-In-Cell Monte Carlo simulations of an extreme ultraviolet radiation driven plasma

M. H. L. van der Velden, W. J. M. Brok, J. J. A. M van der Mullen, W. J. Goedheer, and V. Banine (2006)

Phys. Rev. E, 73(3):036406

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Het ontsteken van gasontladingen

Wouter Brok and Joost van der Mullen (2006)

Nederlands Tijdschrift voor Natuurkunde, 72(4):134-138

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Experimental and modelling investigation of a dielectric barrier discharge in low-pressure argon

E. Wagenaars, R. Brandenburg, W. J. M. Brok, M. D. Bowden, and H.-E. Wagner (2006)

J. Phys. D: Appl. Phys., 39(4):700-711

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Modelling the influence of anode-cathode spacing in a pulsed discharge nozzle

B. H. P. Broks, W. J. M. Brok, J. Remy, J. J. A. M. van der Mullen, A. Benidar, L. Biennier, and F. Salama (2005)

Spectrochimica Acta Part B, 60(11):1442-1449

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Numerical investigation of the discharge characteristics of the pulsed discharge nozzle

B. H. P. Broks, W. J. M. Brok, J. Remy, J. J. A. M. van der Mullen, A. Benidar, L. Biennier, and F. Salama (2005)

Phys. Rev. E, 71(3):036409

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Numerical description of discharge characteristics of the plasma needle

W. J. M. Brok, M. D. Bowden, J. van Dijk, J. J. A. M. van der Mullen, and G. M. W. Kroesen (2005)

J. Appl. Phys., 98(1):013302

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An elemental diffusion description for LTE plasma models

A. Hartgers, H. W. P. van der Heijden, M. L. Beks, J. van Dijk, and J. A. M. van der Mullen (2005)

J. Phys. D: Appl. Phys., 38(18):3422-3429

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An improved lte model of a high pressure sulfur discharge

C.W. Johnston, H.W.P. van der Heijden, A. Hartgers, K. Garloff, J. van Dijk, and J.J.A .M. van der Mullen (2004)

J. Phys. D: Appl. Phys., 37:211-220

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Axial mercury segregation in direct current operated low-pressure argon-mercury gas discharges: Part ii. model

John W. A. M. Gielen, Simon de Groot, Jan van Dijk, and Joost J. A. M. van der Mullen (2004)

J. Phys. D: Appl. Phys., 37:1925-1934

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Opereren met plasma buiten thermodynamisch evenwicht

Jan van Dijk (2004)

Nederlands Tijdschrift voor Natuurkunde, 70(8):250-253

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A model study of propagation of the first ionisation wave during breakdown in a straight tube containing argon

W. J. M. Brok, J. van Dijk, M. D. Bowden, J. J. A. M van der Mullen, and G. M. W.Kroesen (2003)

J. Phys. D: Appl. Phys., 36(16):1967-1979

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A scaling rule for molecular electronic transition dipole moments: application to asymptotically allowed and forbidden transitions

C. W. Johnston and J. J. A. M. van der Mullen (2003)

J. Chem. Phys., 119(4):2056-2061

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The influence of de-maxwellization on a fluorescent lamp simulation

A. Hartgers, J. van Dijk, H.W.P. van der Heijden, and J.A.M. van der Mullen (2003)

J. Phys. D: Appl. Phys., 36:2269-2275

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Implementation of a friction-based self-consistent multicomponent diffusion model in plasimo

A. Hartgers, G. M. Janssen, and J. J. A. M. van der Mullen (2003)

J. Phys. D: Appl. Phys., 36(2):114-121

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Simple model for laser-produced, mass-limited water-droplet plasmas

Kurt Garloff, Michiel van den Donker, Joost van der Mullen, Fred van Goor, Ralph Brummans, and Jeroen Jonkers (2002)

Phys. Rev. E, 66:036403

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A multi-domain boundary-relaxation technique for the calculation of the electromagnetic field in ferrite-core inductive plasmas

Jan van Dijk, Marc van der Velden, and Joost van der Mullen (2002)

J. Phys. D: Appl. Phys., 35(21):2748-2759

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Operational trends in the temperature of a high-pressure microwave powered sulfur lamp

C. W. Johnston, J. Jonkers, and J. J. A. M. van der Mullen (2002)

J. Phys. D: Appl. Phys., 35(20):2578-2585

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General treatment of the interplay between fluid and radiative transport phenomena in symmetric plasmas: the sulphur lamp as a case study

Harm van der Heijden and Joost van der Mullen (2002)

J. Phys. D: Appl. Phys., 35(17):2112-2125

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Radiative transfer of a molecular S2 B-X spectrum using semiclassical and quantum-mechanical radiation coefficients

Harm van der Heijden, Johannes Baier, Achim Körber, and Joost van der Mullen (2002)

J. Phys. B: At. Mol. Opt. Phys., 35:3633-3654

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Gas discharge plasmas and their applications

A. Bogaerts, E. Neyts, R. Gijbels, and J. van der Mullen (2002)

Spectrochimica Acta, 57B Review:609-658

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A self-consistent LTE model of a microwave-driven, high-pressure sulfur lamp

C. W. Johnston, H. W. P. van der Heijden, G. M. Janssen, J. van Dijk, and J. J. A. M. van der Mullen (2002)

J. Phys. D: Appl. Phys., 35(4):342-351

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Semiclassical and quantum-mechanical descriptions of S2 molecular radiation

Harm van der Heijden and Joost van der Mullen (2001)

J. Phys. B: At. Mol. Opt. Phys., 34:4183-4201

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Modelling an ar-hg fluorescent lamp plasma using a 3 electron-temperature approximation

A. Hartgers and J. A. M. van der Mullen (2001)

J. Phys. D: Appl. Phys., 34(12):1907-1913

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Collisional radiative models with multiple transport-sensitive levels - application to high electron density mercury discharges

Jan van Dijk, Bart Hartgers, Jeroen Jonkers, and Joost van der Mullen (2001)

J. Phys. D: Appl. Phys., 34(10):1499-1509

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Energy loss mechanisms in the microdischarges in plasma display panels

G. J. M. Hagelaar, M. H. Klein, R. J. M. M. Snijkers, and G. M. W. Kroesen (2001)

J. Appl. Phys., 89(4):2033-2039

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CRModel: A general collisional radiative modeling code

A. Hartgers, J. van Dijk, J. Jonkers, and J. A. M. van der Mullen (2001)

Comp. Phys. Comm., 135(2):199-218

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Energy loss mechanisms in AC-PDP discharges

M. H. Klein, R. J. M. M. Snijkers, and G. J. M. Hagelaar (2000)

IEEE Trans. on Plasma Science, E83-C(10):1602-1607

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Resonance radiation transport in plasma display panels

G. J. M. Hagelaar, M. H. Klein, R. J. M. M. Snijkers, and G. M. W. Kroesen (2000)

J. Appl. Phys., 88(10):5538-5542

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A monte carlo modelling study of the electrons in the microdischarges in plasma addressed liquid crystal displays

G. J. M. Hagelaar and G. M. W. Kroesen (2000)

Plasma Sources Sci. Technol., 9(4):605-614

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Modeling of the microdischarges in plasma addressed liquid crystal displays

G. J. M. Hagelaar, G. M. W. Kroesen, U. van Slooten, and H. Schreuders (2000)

J. Appl. Phys., 88(5):2252-2262

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Energy distribution of ions and fast neutrals in microdischarges for display technology

G. J. M. Hagelaar, G. M. W. Kroesen, and M. H. Klein (2000)

J. Appl. Phys., 88(5):2240-2245

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Boundary conditions in fluid models of gas discharges

G. J. M. Hagelaar, F. J. de Hoog, and G. M. W. Kroesen (2000)

Phys. Rev. E, 62(1):1452-1454

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Speeding up fluid models for gas discharges by implicit treatment of the electron energy source term

G. J. M. Hagelaar and G. M. W. Kroesen (2000)

J. Comp. Phys., 159:1-12

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A collisional radiative model for mercury in high-current discharges

Jan van Dijk, Bart Hartgers, Jeroen Jonkers, and Joost van der Mullen (2000)

J. Phys. D: Appl. Phys., 33(21):2798-2806

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PLASIMO, a general model: I. applied to an argon cascaded arc plasma

G. M. Janssen, J. van Dijk, D. A. Benoy, M. A. Tas, K. T. A. L. Burm, W. J. Goedheer, J. J. A. M. van der Mullen, and D. C. Schram (1999)

Plasma Sources Sci. Technol., 8(1):1-14

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Fundamental comparison between non-equilibrium aspects of ICP and MIP discharges

Joost van der Mullen and Jeroen Jonkers (1999)

Spectrochimica Acta, 54B Review:1017-1044

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Ionization efficiency in a geometrically pinched cascaded arc

K. T. A. L. Burm, W. J. Goedheer, J. J. A. M. van der Mullen, G. M. Janssen, and D. C. Schram (1998)

Plasma Sources Sci. Technol., 7(3):395-409

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Saha equation for two-temperature plasmas: Theories, experimental evidence and interpretation

J. A. M. van der Mullen, D. A. Benoy, F. H. A. G. Fey, and B. van der Sijde (1994)

Phys. Rev., E50:3925-3934

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Excitation equilibria in plasmas; a classification

J. A. M. van der Mullen (1990)

Physics Reports, 2&3(191):109-220

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Computational Physics of Low-Temperature Plasma Simulation: Stoichiometric transformations, Krylov methods and improved quadrature rules

C. E. M. Schoutrop (2023)

Eindhoven University of Technology, The Netherlands

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Modelling of plasma for CO2 conversion: electron kinetics, chemistry and transport

L. Vialetto (2021)

Eindhoven University of Technology, The Netherlands

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Modeling of microwave induced plasmas: application to the production of solar fuels

S. Tadayon Mousavi (2020)

Eindhoven University of Technology, The Netherlands

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Chemical aspects of CO2 plasma modelling

P. Koelman (2019)

Eindhoven University of Technology, The Netherlands

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Studies on plasma-chemical reduction

T. Rehman (2018)

Eindhoven University of Technology, The Netherlands

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Equilibrium and transport in molecular plasmas

J. F. J. Janssen (2016)

Eindhoven University of Technology, The Netherlands

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Modelling of plasmas with complex chemistry: application to microwave deposition reactors

E. H. Kemaneci (2014)

Eindhoven University of Technology, The Netherlands

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Modeling of microwave induced deposition plasmas

S. Rahimi (2014)

Eindhoven University of Technology, The Netherlands

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Studies on the discretization of plasma transport equations

L. Liu (2013)

Eindhoven University of Technology, The Netherlands

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Laser diagnostics and modelling of microwave plasmas

E. A. D. Carbone (2013)

Eindhoven University of Technology, The Netherlands

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Zero-dimensional models for plasma chemistry

W. A. A. D. Graef (2012)

Eindhoven University of Technology, The Netherlands

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Modeling of magnetized expanding plasmas

K. S. C. Peerenboom (2012)

Eindhoven University of Technology, The Netherlands

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Laser-induced shock wave cleaning of EUV photomasks

N. A. Lammers (2012)

Eindhoven University of Technology, The Netherlands

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Breakdown processes in HID lamps

A. Sobota (2011)

Eindhoven University of Technology, The Netherlands

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Modelling of microwave induced plasmas

M. Jimenez-Diaz (2011)

Eindhoven University of Technology, The Netherlands

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Sputtering hollow cathode discharges designed for laser applications

D. B. Mihailova (2010)

Eindhoven University of Technology, The Netherlands

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Modelling additive transport in metal halide lamps

M. L. Beks (2008)

Eindhoven University of Technology, The Netherlands

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Modelling microwave plasmas for deposition purposes

M. J. van den Donker (2008)

Eindhoven University of Technology, The Netherlands

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Multi-fluid modeling of transient plasmas

B. H. P. Broks (2006)

Eindhoven University of Technology, The Netherlands

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Modelling of Transient Phenomena in Gas Discharges

W. J. M. Brok (2005)

Eindhoven University of Technology, The Netherlands

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Modelling of a Fluorescent Lamp Plasma

A. Hartgers (2003)

Eindhoven University of Technology, The Netherlands

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Transport and Equilibrium in Molecular Plasmas: the sulfur lamp

C. W. Johnston (2003)

Eindhoven University of Technology, The Netherlands

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Modelling of Radiative Transfer in Light Sources

H. W. P. van der Heijden (2003)

Eindhoven University of Technology, The Netherlands

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Modelling of Plasma Light Sources - an object-oriented approach

J. van Dijk (2001)

Eindhoven University of Technology, The Netherlands

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Design of a General Plasma Simulation Model, Fundamental Aspects and Applications

G. M. Janssen (2000)

Eindhoven University of Technology, The Netherlands

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Modeling of Microdischarges for Display Technology

G. J. M. Hagelaar (2000)

Eindhoven University of Technology, The Netherlands

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Modelling of Thermal Argon Plasmas

D. A. Benoy (1993)

Eindhoven University of Technology, The Netherlands

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Excitation Equilibria in Plasmas - a classification

J. J. A. M. van der Mullen (1986)

Eindhoven University of Technology, The Netherlands

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A Permutation Invariant H2–H2 Potential Energy Surface for the Purpose of Studying Vibrational Energy Transfer

Fleur Hendriks (2021)

Supervisors: Jan van Dijk and Jesper F. Janssen

Master thesis, Eindhoven University of Technology, The Netherlands

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The role of surface charge during atmospheric-pressure plasma surface treatment

Sjoerd F.W. Telkamp (2021)

Supervisors: Job Beckers, E. Osorio Oliveros, Zahra Marvi, Jesper F.J. Janssen and Diana Mihailova

Master thesis, Eindhoven University of Technology, The Netherlands

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Microwave absorption in an ECR plasma: A theoretical analysis and computational implementation for unstructured meshes using vector finite elements

D.A. van Ameijde (2021)

Supervisors: Rick H.S. Budé and J. van Dijk

Master thesis, Eindhoven University of Technology, The Netherlands

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The finite volume method for systems of conservation laws: application to multicomponent mixtures

R.A.M. van Gestel (2019)

Supervisors: J. van Dijk and J.H.M. ten Thije Boonkkamp

Master thesis, Eindhoven University of Technology, The Netherlands

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A chemical reduction method based on pathway analysis

J. Gulpen (2019)

Supervisors: S. Tadayon Mousavi and J. van Dijk

Master thesis, Eindhoven University of Technology, The Netherlands

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Multidimensional intrinsic low-dimension manifolds in plasma modelling

J.C.A. van Laanen (2019)

Supervisors: C.E.M. Schoutrop and J. van Dijk

Bachelor thesis, Eindhoven University of Technology, The Netherlands

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Parametric study of the CO2 global model

T.M.P. Broekema (2019)

Supervisors: S. Tadayon Mousavi and J. van Dijk

Bachelor thesis, Eindhoven University of Technology, The Netherlands

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On the reservoir model for CO2-laser amplification

S.C. Selvi (2018)

Supervisors: J. van Dijk and D. Mihailova

Master thesis, Eindhoven University of Technology, The Netherlands

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Modelling of atmospheric pressure high current diffuse dielectric barrier discharges in a roll-to-roll geometry

K. C. van 't Veer (2018)

Supervisors: J. van Dijk
External coach: Y. Liu, H.W. de Vries and D. Mihailova

Master thesis, Eindhoven University of Technology, The Netherlands

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Dimension reduction of global models using principal component analysis

S.L. Bardoel (2017)

Supervisors: P.M.J. Koelman and J. van Dijk

Master thesis, Eindhoven University of Technology, The Netherlands

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A numerical study of a fast axial flow CO2 laser using PLASIMO

M.W.T.M. van Dort (2017)

Bachelor thesis, Eindhoven University of Technology, The Netherlands

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Modelling of solar cell production: a global model of a microwave hydrogen-silane plasma and the effect of pulsed input power

W.J.H. Berghuis (2015)

Supervisors: W.A.A.D. Graef and J. van Dijk

Bachelor thesis, Eindhoven University of Technology, The Netherlands

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Validation of a new method for numerically modeling LTE plasmas and elemental demixing in PLASIMO

J. van Boxtel (2013)

Supervisors: J. van Dijk and K.S.C. Peerenboom

Bachelor thesis, Eindhoven University of Technology, The Netherlands

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The energy balance of HID lamps

J. F. J. Janssen (2012)

Supervisors: A.J. Rijke, M. Haverlag, S. Nijdam and G.M.W. Kroesen

Master thesis, Eindhoven University of Technology, The Netherlands

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Numerical studies on the breakdown process in gas discharges

P. Verhoeven (2012)

Supervisors: G.M.W. Kroesen, D. Mihailova and J. van Dijk

Master thesis, Eindhoven University of Technology, The Netherlands

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Homogeneous flux scheme for plasma simulation

L. Liu (2009)

Supervisors: J.H.M. ten Thije Boonkkamp and J. van Dijk

Master thesis, Eindhoven University of Technology, The Netherlands

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Time dependent collisional radiative model of an extreme ultraviolet driven plasma

W.A.A.D. Graef (2009)

Supervisors: J.J.A.M. van der Mullen, M.H.L. van der Velden and M. van Kampen

Master thesis, Eindhoven University of Technology, The Netherlands

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Design of a computational model for compressible, magnetized flows in Magnum PSI

K. Peerenboom (2009)

Eindhoven University of Technology, The Netherlands

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Laser shockwave cleaning

N. A. Lammers (2008)

Eindhoven University of Technology, The Netherlands

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Towards a hybrid fluid-monte carlo model for pulsed hollow cathode discharges

M. L. Beks (2003)

Eindhoven University of Technology, The Netherlands

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Extending the capabilities of a plasma simulation model: A case study of a hollow catode discharge

B. H. P. Broks (2002)

Eindhoven University of Technology, The Netherlands

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Modelling of the phase resolved electrical behaviour of high intensity discharge lamps

W. J. M. Brok (2001)

Eindhoven University of Technology, The Netherlands

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Radiative and collisional processes in Argon-Mercury plasmas: application to the Philips QL-lamp: modeling and experiments

R.M.J. Haanraads (1998)

Supervisors: J.J.A.M. van der Mullen, J. van Dijk and M.J. van de Sande

Master thesis, Eindhoven University of Technology, The Netherlands

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Towards a plasma simulation model for the Philips QL-lamp: collisional radiative model and Thomson scattering measurements

P.G.J.M. Herben (1997)

Supervisors: J. Jonkers, J. van Dijk, J.J.A.M. van der Mullen and Daan C. Schram (Supervisor 2)

Master thesis, Eindhoven University of Technology, The Netherlands

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Modelling of a high pressure closed inductively coupled plasma for lighting purposes

J. van Dijk (1996)

Supervisors: J.J.A.M. van der Mullen, D.A. Benoij and J.M. de Regt

Master thesis, Eindhoven University of Technology, The Netherlands