Compact solid-state switched pulsed power and its applications W Jiang, K Yatsui, K Takayama, M Akemoto, E Nakamura, N Shimizu, ... Proceedings of the IEEE 92 (7), 1180-1196, 2004 | 301 | 2004 |
High-power nanosecond pulse generators based on semiconductor opening switches SN Rukin Instruments and experimental Techniques 42 (4), 439-467, 1999 | 207 | 1999 |
Pulsed power technology based on semiconductor opening switches: A review SN Rukin Review of scientific instruments 91 (1), 2020 | 128 | 2020 |
Novel nanosecond semiconductor opening switch for megavolt repetitive pulsed power technology: Experiment and applications YA Kotov, GA Mesyats, SN Rukin, AV Filatov, SK Lyubutin Novel Applications of Lasers and Pulsed Power 2374, 98-103, 1995 | 115 | 1995 |
Production of short microwave pulses with a peak power exceeding the driving electron beam power AA Eltchaninov, SD Korovin, VV Rostov, IV Pegel, GA Mesyats, SN Rukin, ... Laser and particle beams 21 (2), 187-196, 2003 | 98 | 2003 |
Generation of electromagnetic fields of extremely high intensity by coherent summation of Cherenkov superradiance pulses NS Ginzburg, AW Cross, AA Golovanov, GA Mesyats, MS Pedos, ... Physical review letters 115 (11), 114802, 2015 | 87 | 2015 |
Генераторы мощных наносекундных импульсов с полупроводниковыми прерывателями тока СН Рукин Приборы и техника эксперимента, 5-36, 1999 | 82 | 1999 |
Superradiant Ka-band Cherenkov oscillator with 2-GW peak power VV Rostov, IV Romanchenko, MS Pedos, SN Rukin, KA Sharypov, ... Physics of Plasmas 23 (9), 2016 | 81 | 2016 |
High-power subnanosecond 38-GHz microwave pulses generated at a repetition rate of up to 3.5 kHz DM Grishin, VP Gubanov, SD Korovin, SK Lyubutin, GA Mesyats, ... Technical Physics Letters 28, 806-809, 2002 | 73 | 2002 |
High peak power and high average power subnanosecond modulator operating at a repetition frequency of 3.5 kHz MI Yalandin, SK Lyubutin, MR Oulmascoulov, SN Rukin, VG Shpak, ... IEEE transactions on plasma science 30 (5), 1700-1704, 2003 | 70 | 2003 |
Coherent summation of Ka-band microwave beams produced by sub-gigawatt superradiance backward wave oscillators KA Sharypov, AA El'Chaninov, GA Mesyats, MS Pedos, IV Romancheko, ... Applied Physics Letters 103 (13), 2013 | 68 | 2013 |
Repetitive nanosecond all-solid-state pulsers based on SOS diodes SK Lyubutin, GA Mesyats, SN Rukin, BG Slovikovskii Digest of Technical Papers. 11th IEEE International Pulsed Power Conference …, 1997 | 65 | 1997 |
Generators of powerful nanosecond pulses with semiconductor opening switch SN Rukin Pribory&Technika Experimenta (4), 5-36, 1999 | 58 | 1999 |
Generation of gigawatt 10-GHz pulses with stable phase DM Grishin, SK Lyubutin, GA Mesyats, VV Rostov, SN Rukin, ... Technical Physics Letters 34, 822-824, 2008 | 50 | 2008 |
Semiconductor opening switch research at IEP GA Mesyats, SN Rukin, SK Lyubutin, SA Darznek, YA Litvinov, VA Telnov, ... Digest of Technical Papers. Tenth IEEE International Pulsed Power Conference …, 1995 | 50 | 1995 |
Formation of 1.4 MeV runaway electron flows in air using a solid-state generator with 10 MV/ns voltage rise rate GA Mesyats, MS Pedos, SN Rukin, VV Rostov, IV Romanchenko, ... Applied Physics Letters 112 (16), 2018 | 48 | 2018 |
Four channel high power RF source with beam steering based on gyromagnetic nonlinear transmission lines IV Romanchenko, MR Ulmaskulov, KA Sharypov, SA Shunailov, ... Review of Scientific Instruments 88 (5), 2017 | 48 | 2017 |
Degradation and recovery of the emission from a graphite cathode in relation to the repetition frequency of nanosecond accelerating pulses SD Korovin, EA Litvinov, GA Mesyats, VV Rostov, SN Rukin, VG Shpak, ... IEEE transactions on plasma science 34 (5), 1771-1776, 2006 | 45 | 2006 |
Superfast thyristor-based switches operating in impact-ionization wave mode AI Gusev, SK Lyubutin, SN Rukin, SN Tsyranov IEEE Transactions on Plasma Science 44 (10), 1888-1893, 2016 | 42 | 2016 |
A 6 GW nanosecond solid-state generator based on semiconductor opening switch AI Gusev, MS Pedos, SN Rukin, SP Timoshenkov, SN Tsyranov Review of Scientific Instruments 86 (11), 2015 | 39 | 2015 |