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Kiss Mátyás
Kiss Mátyás
PTE TTK
Verified email at fizika.ttk.pte.hu
Title
Cited by
Cited by
Year
Magnetoelectric Confinement and Stabilization of Pinch in a Soft–x-Ray Laser
J Szasz, M Kiss, I Santa, S Szatmari, SV Kukhlevsky
Physical review letters 110 (18), 183902, 2013
242013
Critical Parameters of the Pumping Scheme of Ar+8 Lasers Excited by Z Pinches in Long Capilaries
J Szasz, M Kiss, I Santa, S Szatmari, SV Kukhlevsky
Contributions to Plasma Physics 52 (9), 770-775, 2012
132012
Theoretical Investigation of Z-Pinch Ar-Plasma Waveguide in a Millimeter-Scale Cross Section Capillary
AA Shapolov, M Kiss, SV Kukhlevsky
IEEE Transactions on Plasma Science 46 (11), 3886-3890, 2018
42018
A simplified MHD model of capillary Z‐pinch compared with experiments
AA Shapolov, M Kiss, SV Kukhlevsky
Contributions to Plasma Physics 56 (10), 959-967, 2016
42016
Soft x-ray Ar + 8 laser excited by low-voltage capillary discharge
B Fekete, M Kiss, AA Shapolov, S Szatmári, SV Kukhlevsky
Optics Express 31 (21), 34381-34390, 2023
22023
Method and apparatus for synchronized starting of soft x-ray lasers
G Almási, M Kiss, S Kuhlevszkij, I Sánta, S Szatmári, J Szász
US Patent 8,792,522, 2014
22014
PHYSICS AND TECHNIQUES OF TABLE-TOP SOFT X-RAY Ar+ 8 LASERS EXCITED BY CAPILLARY Z-PINCHES
J Szasz, M Kiss, I Santa, S Szatmari, SV Kukhlevsky
Book: Short Wavelength Laboratory Sources: Principles and Practices, 2014
22014
Table-Top Soft X-ray Ar+ 8 Lasers Excited By Capillary Z-Pinches
J Szasz, M Kiss, I Santa, S Szatmari, SV Kukhlevsky
Wavelength Laboratory Sources: Principles and Practices, 85-101, 2014
12014
Low-Voltage Capillary Z-Pinches With Short Rise Times and High Currents for Portable Soft X-Ray Ar Lasers
B Fekete, M Kiss, AA Shapolov, S Szatmari, SV Kukhlevsky
IEEE Transactions on Plasma Science, 2024
2024
Short rise-and decay-time Z-pinch currents for soft x-ray laser excitation
B Fekete, M Kiss, AA Shapolov, S Szatmari, SV Kukhlevsky
AIP Advances 14 (2), 2024
2024
Theoretical study of wakefield acceleration of electrons in capillary Z-pinch plasma waveguide
AA Shapolov, B Fekete, M Kiss, S Szatmári, SV Kukhlevsky
IOP Conference Series: Materials Science and Engineering 715 (1), 012106, 2020
2020
Modeling of soft X-ray Ar+ 8-laser excited by capillary Z-pinch versus experiments
AA Shapolov, M Kiss, B Fekete, S Szatmari, SV Kukhlevsky
Conference on Lasers and Electro-Optics/Pacific Rim, W3A. 47, 2018
2018
Generation of a long, plasma-based waveguid by capillary Z-pinch for acceleration of electrons: Theory and experiment
M Kiss, J Szasz, I Santa, SV Kukhlevsky
2013 Abstracts IEEE International Conference on Plasma Science (ICOPS), 1-1, 2013
2013
SOFT X-RAY AR LASERS AND WAKE-FIELD ELECTRON ACCELERATORS BY USING LOW-CURRENT CAPILLARY Z-PINCHES
B Fekete, M Kiss, AA Shapolov, S Szatmari, SV Kukhlevsky
THEORETICAL INVESTIGATION OF THE Ar-GAS FILLED CAPILLARY DISCHARGE WAVEGUIDE
AA Shapolov, M Kiss, S Szatmari, SV Kukhlevsky
WAVEGUIDE PROPERTIES OF THE CAPILLARY Z-PINCH PLASMA
AA Shapolov, B Fekete, M Kiss, S Szatmari, SVKAA Shapolov, ...
ANALYSIS OF GAS-FILLED CAPILLARY DISCHARGE SYSTEMS FOR PLASMA WAVEGUIDES
M Kiss, A Sapolov, B Fekete, S Szatmari, SV Kukhlevsky
MHD MODELING OF THE CAPILLARY DISCHARGE PLASMA AND THE FUTURE PROSPECTS
AA Shapolov, M Kiss, SVKAA Shapolov, SV Kukhlevsky
DISCHARGE CHARACTERISTICS OF GAS-FILLED SPARKGAP FOR PLASMA-BASED XUV LASERS AND WAVEGUIDES
M Kiss, A Sapolov, B Fekete, S Szatmari, SV Kukhlevsky
STUDY OF THE X-RAY RADIATION GAIN IN CONTEXT OF MHD MODELING OF CAPILLARY DISCHARGE PLASMA
AA Shapolov, M Kiss, SVKAA Shapolov, SV Kukhlevsky
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