The physics of streamer discharge phenomena S Nijdam, J Teunissen, U Ebert Plasma Sources Science and Technology 29 (10), 103001, 2020 | 304 | 2020 |
Probing photo-ionization: experiments on positive streamers in pure gases and mixtures S Nijdam, F Van De Wetering, R Blanc, EM Van Veldhuizen, U Ebert Journal of Physics D: Applied Physics 43 (14), 145204, 2010 | 235 | 2010 |
Review of recent results on streamer discharges and discussion of their relevance for sprites and lightning U Ebert, S Nijdam, C Li, A Luque, T Briels, E van Veldhuizen Journal of Geophysical Research-Part A-Space Physics 116 (1), 2011 | 214 | 2011 |
Probing photo-ionization: simulations of positive streamers in varying N2: O2-mixtures G Wormeester, S Pancheshnyi, A Luque, S Nijdam, U Ebert Journal of Physics D: Applied Physics 43 (50), 505201, 2010 | 185 | 2010 |
Probing background ionization: positive streamers with varying pulse repetition rate and with a radioactive admixture S Nijdam, G Wormeester, EM Van Veldhuizen, U Ebert Journal of Physics D: Applied Physics 44 (45), 455201, 2011 | 129 | 2011 |
Investigation of positive streamers by double-pulse experiments, effects of repetition rate and gas mixture S Nijdam, E Takahashi, AH Markosyan, U Ebert Plasma Sources Science and Technology 23 (2), 025008, 2014 | 114 | 2014 |
Stereo-photography of streamers in air S Nijdam, JS Moerman, TMP Briels, EM Van Veldhuizen, U Ebert Applied Physics Letters 92, 101502, 2008 | 84 | 2008 |
Thomson scattering on non-equilibrium low density plasmas: principles, practice and challenges E Carbone, S Nijdam Plasma Physics and Controlled Fusion 57 (1), 014026, 2014 | 83 | 2014 |
Reconnection and merging of positive streamers in air S Nijdam, CGC Geurts, EM Van Veldhuizen, U Ebert Journal of Physics D: Applied Physics 42 (4), 045201, 2009 | 81 | 2009 |
An introduction to nonequilibrium plasmas at atmospheric pressure S Nijdam, E Van Veldhuizen, P Bruggeman, U Ebert Plasma chemistry and catalysis in gases and liquids, 1-44, 2012 | 73 | 2012 |
The importance of thermal dissociation in CO2 microwave discharges investigated by power pulsing and rotational Raman scattering DCM van den Bekerom, JMP Linares, T Verreycken, EM Van Veldhuizen, ... Plasma Sources Science and Technology 28 (5), 055015, 2019 | 70 | 2019 |
Multiple scales in streamer discharges, with an emphasis on moving boundary approximations U Ebert, F Brau, G Derks, W Hundsdorfer, CY Kao, C Li, A Luque, ... Nonlinearity 24 (1), C1, 2010 | 69 | 2010 |
Nanosecond repetitively pulsed discharges in N2–O2 mixtures: inception cloud and streamer emergence S Chen, LCJ Heijmans, R Zeng, S Nijdam, U Ebert Journal of Physics D: Applied Physics 48 (17), 175201, 2015 | 68 | 2015 |
Streamer discharges can move perpendicularly to the electric field S Nijdam, E Takahashi, J Teunissen, U Ebert New Journal of Physics 16 (10), 103038, 2014 | 66 | 2014 |
Method and system for lighting control CCF Frumau, SM Verbrugh, S Nijdam, B Simpelaar US Patent 8,093,817, 2012 | 63 | 2012 |
Spatio-temporal dynamics of a pulsed microwave argon plasma: ignition and afterglow E Carbone, N Sadeghi, E Vos, S Hübner, E Van Veldhuizen, J Van Dijk, ... Plasma Sources Science and Technology 24 (1), 015015, 2014 | 62 | 2014 |
Experimental Investigations on the Physics of Streamers S Nijdam Eindhoven University of Technology, 2011 | 59 | 2011 |
Sprite discharges on Venus and Jupiter‐like planets: A laboratory investigation D Dubrovin, S Nijdam, EM Van Veldhuizen, U Ebert, Y Yair, C Price Journal of Geophysical Research: Space Physics 115 (A6), 2010 | 59 | 2010 |
A self-consistent model of ionic wind generation by negative corona discharges in air with experimental validation S Chen, J Nobelen, S Nijdam Plasma Sources Science and Technology 26 (9), 095005, 2017 | 58 | 2017 |
The role of free electrons in the guiding of positive streamers S Nijdam, J Teunissen, E Takahashi, U Ebert Plasma Sources Science and Technology 25 (4), 044001, 2016 | 57 | 2016 |