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11篇 您的检索式:作者名="Zherlitsyn"
    题名 作者 年代 出处 被引量
1An S-band virctor with premodulated electron beam based on a compact generator with inductive energy storage显示文摘Efre mov A M Zherlitsyn A A Kitsanov S A 2001Tech Phys Lett2001,27,4:1
2Adhesion of PBO fiber in epoxy composites显示文摘E. M?der S. Melcher J. W. Liu S. L. Gao A. D. Bianchi S. Zherlitsyn J. Wosnitza 2007Journal of Materials Science2007,,19:1
3Charge Carrier Doping in the Ni(dmit)2 Simple Salts by Hydrogen-Bonding Pyridinium Cations显示文摘Wolf B Zherlitsyn S Schmidt S Luethi B 2002Phys Status Solidi A2002,189,:1
4An S-band vircator with premodulated electron beam based on a compact generator with inductive energy storage显示文摘Efremov A M Zherlitsyn A A Kitsanov S A 2001Tech Phys Lett2001,27,4:1
5A vacuum feedthrough insulator at a voltage of -1 MV显示文摘Volkov S N Zherlitsyn A A Koval'chuk B M 2003Instruments and Experimental Techniques2003,46,5:1
6Pulsed-magnet design at the Dresden high magnetic field laboratory显示文摘Zherlitsyn S Herrmannsdoerfer T Skourski Y 2006Journal of Physics : Conference Series2006,51,:1
7Coil design for non-destructive pulsed field magnets targeting 100 T显示文摘ZHERLITSYN S BIANCHI A D HERRMANNSDOERFER T 2006IEEE Transactions on Applied Superconductivity2006,16,2:1
8An S--band vircator with premodulated electron beam based on a compact generator with inductive energy storage显示文摘Efremov A M Zherlitsyn A A Kitsanov S A 2001Techn Phys Lett2001,27,4:1
9An S-band vircator with premodalated electron beam based on a compact generator with inductive energy storage 显示文摘Efremov A M Zherlitsyn A A Kit sanov S A 2001Tech Phys Lett2001,27,4:1
10The High Field Project at Dresden/Rossendorf: A Pulsed 100 T/10 ms Laboratory at an Infrared Free-Electron-Laser Facility显示文摘T. Herrmannsd?rfer H. Krug F. Pobell S. Zherlitsyn H. Eschrig J. Freudenberger K. H. Müller L. Schultz 2003Journal of Low Temperature Physics (-)2003,,1:1
11Pulsed high-current discharge in water:adiabatic model of expanding plasma channel and acoustic wave显示文摘This paper presents the results of a theoretical and experimental study of the use of a pulsed discharge in water to obtain a strong acoustic wave in a liquid medium.A discharge with a current amplitude of 10 kA,a duration of 400 ns,and an amplitude pulsed power of 280 MW in water at atmospheric pressure created an expanding acoustic wave with an amplitude of more than 100 MPa.To describe the formation of the discharge channel,an isothermal plasma model has been developed,which made it possible to calculate both the expansion dynamics of a high-current channel and the strong acoustic wave generated by it.Our calculations show that the number density of plasma in the channel reaches 10^(20) cm^(-3),while the degree of water vapor ionization is about 10%,and the channel wall extends with a velocity of 500 m s^(−1).The calculations for the acoustic wave are in good agreement with measurements.A KOZYREV A ZHERLITSYN N SEMENIUK 2022Plasma Science and Technology2022,24,3:0
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