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| 1 | Optimum geometry and performance of a dual mode horn modification显示文摘 | Skobelev S P Ku BJ Shishlov A V | 2001 | IEEE Antennas and Propagation Magazine2001,43,1: | 1 |
| 2 | Late Cenozoic slip on the Talas-Ferghana fault, the Tian Shan, Central Asia显示文摘 | Burtman V S Skobelev S F Molnar P | 1996 | Geological Society of America Bulletin1996,108,: | 1 |
| 3 | Late Cenozoic slip on the Talas-Ferghana fault, the Tien Shan, central Asia显示文摘 | Burtman V S Skobelev S F Molnar P | 1996 | Geological Society of America Bulletin1996,108,8: | 1 |
| 4 | X-pinch plasma conditions from time resolved X-ray spectroscopy 显示文摘 | SHELKOVENKO T A PIKUZ S A SKOBELEV I Y | 2003 | Review of Scientific Instruments2003,74,3: | 1 |
| 5 | Efficient epoxidation of olefins by H2 02 catalyzed by iron 'helmet' phthalocya- nines 显示文摘 | SKOBELEV I Y KUDRIK E V ZALOMAEVA O V | 2013 | Chemical Communications2013,49,: | 1 |
| 6 | In situ EPR monitoring of chromium species formed during Cr-pyrrolyl ethylene trimerization catalyst formation显示文摘 | Skobelev I Y Panchenko V N Lyakin O Y | 2010 | Organometallics2010,29,13: | 1 |
| 7 | 查看详情显示文摘 | Skobelev I Y Faenov A Y Dyakin V M Fiedorowicz H Bartnik A Szczurek M | | 0,,: | 1 |
| 8 | Magenta Toolkit: A Set of Multi - Agent Tools for Developing Adaptive Real - Time Applications显示文摘 | Rzevski G Skobelev P Andreev V | 2007 | Holonic and Multi -Agent Systems For Manufacturing2007,,4659: | 1 |
| 9 | A Multi - agent Scheduler for Rent - a - Car Companies显示文摘 | Andreev S Rzevski G Shviekin P Skobelev P Yankov I | 2009 | Holonic and Multi -Agent Systems For Manufacturing2009,,5696: | 1 |
| 10 | Hot-electron influence on the X ray emission spectra of Ar clusters heated by a high-intensity 60-fs laser pulse显示文摘 | Abdallah J Faenov A Ya Skobelev I Yu | 2001 | Phys Rev A2001,63,3: | 1 |
| 11 | X-ray spectroscopic observations of a superdense plasma in nanoparticles irradiated by superintense femtosecond laser radiation显示文摘 | FAENOV A Y PIKUZ T A SKOBELEV I Y | 2005 | JETP Letters2005,80,12: | 1 |
| 12 | Methods of constructing optimum phased-array antennas for limited field of view显示文摘 | Skobelev S P | 1998 | IEEE Mag Antennas Propagat1998,40,2: | 1 |
| 13 | Analysis of waveguide antenna arrays with protruding dielectric elements显示文摘 | Skobelev S P Mukhamedov L L | 1993 | IEEE Trans Antennas Propagat1993,41,5: | 1 |
| 14 | Forming flat-topped element patterns in antenna arrays of two-mode waveguides显示文摘 | Skobelev S P Vyazigin A S | 1993 | Electronics Letters1993,29,22: | 1 |
| 15 | In situ EPR monitoring of chromium species formed during Cr-pyrrolyl ethylene trimerization catalyst forma- tion 显示文摘 | Igor Y Skobelev Valentina N Panchenko Oleg Y Lyakin | 2010 | Organometallics2010,29,13: | 1 |
| 16 | X-ray spectral investigations of a high irradiance picosecond laser produced plasma显示文摘 | Bryunetkin B A Faenov A YA Kalashnikov M Nickles P Schnuerer M Skobelev YU I Abdallahjr J Clark R E H | 1995 | JQSRT1995,53,: | 1 |
| 17 | High resolution meastarement, line identification, and spectral modeling of the Kβ spectrum of heliumlike argon emitted by laser produced plasma using a gas puff target显示文摘 | Skobelev I Y Faneov A Y Dyakin V M | 1997 | PhyRev E1997,55,37: | 1 |
| 18 | X-ray absorption spectroscopy study of energy transport in foil targets heated by petawatt laser pulses显示文摘X-ray absorption spectroscopy is proposed as a method for studying the heating of solid-density matter excited by secondary X-ray radiation from a relativistic laser-produced plasma. The method was developed and applied to experiments involving thin silicon foils irradiated by 0.5–1.5 ps duration ultrahigh contrast laser pulses at intensities between 0.5 × 10^(20) and 2.5 × 10^(20) W∕cm^2. The electron temperature of the material at the rear side of the target is estimated to be in the range of 140–300 eV. The diagnostic approach enables the study of warm dense matter states with low self-emissivity. | I. Y. SKOBELEV S. N. RYAZANTSEV D. D. ARICH P. S. BRATCHENKO A. Y. FAENOV T. A. PIKUZ P. DUREY L. DOEHL D. FARLEY C. D. BAIRD K. L. LANCASTER C. D. MURPHY N. BOOTH C. SPINDLOE P. MCKENNA S. B. HANSEN J. COLGAN R. KODAMA N. WOOLSEY S. A. PIKUZ | 2018 | Photonics Research2018,6,4: | 0 |
| 19 | Suppressing small-scale self-focusing of high-power femtosecond pulses显示文摘It was shown experimentally that for a 65-fs 17-J pulse,the effect of filamentation instability,also known as small-scale self-focusing,is much weaker than that predicted by stationary and nonstationary theoretical models for high B-integral values.Although this discrepancy has been left unexplained at the moment,in practice no signs of filamentation may allow a breakthrough in nonlinear pulse post-compression at high laser energy. | Mikhail Martyanov Vladislav Ginzburg Alexey Balakin Sergey Skobelev Dmitry Silin Anton Kochetkov Ivan Yakovlev Alexey Kuzmin Sergey Mironov Ilya Shaikin Sergey Stukachev Andrey Shaykin Efim Khazanov Alexander Litvak | 2023 | High Power Laser Science and Engineering2023,11,2: | 0 |
| 20 | Clean source of soft X-ray radiation formed in supersonic Ar gas jets by high-contrast femtosecond laser pulses of relativistic intensity显示文摘In this work,we optimized a clean,versatile,compact source of soft X-ray radiation(Ex-ray∼3 keV)with an yield per shot up to 7×10^11 photons/shot in a plasma generated by the interaction of high-contrast femtosecond laser pulses of relativistic intensity(Ilas∼10^18-10^19 W/cm^2)with supersonic argon gas jets.Using high-resolution X-ray spectroscopy approaches,the dependence of main characteristics(temperature,density and ionization composition)and the emission efficiency of the X-ray source on laser pulse parameters and properties of the gas medium was studied.The optimal conditions,when the X-ray photon yield reached a maximum value,have been found when the argon plasma has an electron temperature of Te∼185 eV,an electron density of Ne∼7×10^20 cm^-3 and an average charge of Z∼14.In such a plasma,a coefficient of conversion to soft X-ray radiation with energies Ex-ray∼3.1(±0.2)keV reaches 8.57×10^-5,and no processes leading to the acceleration of electrons to MeV energies occur.It was found that the efficiency of the X-ray emission of this plasma source is mainly determined by the focusing geometry.We confirmed experimentally that the angular distribution of the X-ray radiation is isotropic,and its intensity linearly depends on the energy of the laser pulse,which was varied in the range of 50-280 mJ.We also found that the yield of X-ray photons can be notably increased by,for example,choosing the optimal laser pulse duration and the inlet pressure of the gas jet. | Maria Alkhimova Sergey Ryazantsev Igor Skobelev Alexey Boldarev Jie Feng Xin Lu Li-Ming Chen Sergey Pikuz | 2020 | High Power Laser Science and Engineering2020,8,2: | 0 |