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75篇 您的检索式:作者名="Pukhov"
    题名 作者 年代 出处 被引量
1Relativistic magnetic self-channeling of light in near-critical plasma: three-dimensional particle-in-cell simulation显示文摘 Meyer-Ter-Vehn J 1996Phys Rev Lett1996,76,:1
2Three-dimensional simulations of ion acceleration from a foil irradiated by a short-pulse laser 显示文摘A Pukhov 2001Phys Rev Lett2001,86,16:1
3A laser-plasma accelerator producing monoenergetic electron beams 显示文摘FAURE J GLINEC Y PUKHOV A 2004Nature2004,431,7008:1
4查看详情显示文摘Pukhov A Sheng Z M Meyer-ter-Vehn J 0,,:1
5A laser-plasma accelerator producing monoenergetie electron beams显示文摘Faure J Glinec Y Pukhov A 2004Nature2004,431,:1
6A laser-plasma accelerator producing monoenergetic electron beams显示文摘FAURE J GLINEC Y PUKHOV A 2004Nature2004,431,:1
7Short-pulse laser harmonics from oscillating plasma surfaces drive at relativistic intensity显示文摘Lichters R Meyer-ter-Vehn J Pukhov A 1996Phys Plasmas1996,3,:1
8Three-dimensional simulation of ion acceleration from a foil irradiated by a short-pulse laser显示文摘Pukhov A 2001Phy Rev Lett2001,86,:1
9Relativistic magnetic self-channeling of light in plasma three-dimension PIC simulation显示文摘Pukhov A Meyer-ter-Vehn J 1996Phys RevLett1996,76,:1
10Exploring novel target structures for manipulating relativistic laser–plasma interaction显示文摘The improved laser-to-pedestal contrast ratio enabled by current high-power laser pulse cleaning techniques allows the fine features of the target survive before the main laser pulse arrives. We propose to introduce the nano-fabrication technologies into laser–plasma interaction to explore the novel effects of micro-structures. We found out that not only laser-driven particle sources but also the laser pulse itself can be manipulated by specifically designed micro-cylinder and-tube targets, respectively. The proposal was supported by full-3D particle-in-cell simulations and successful proofof-principle experiments for the first time. We believe this would open a way to manipulate relativistic laser–plasma interaction at the micro-size level.Liangliang Ji Sheng Jiang Alexander Pukhov Richard Freeman Kramer Akli 2017High Power Laser Science and Engineering2017,5,2:1
11Three-dimensional simulation of ion acceleration from a foil irradiated by a short-pulse laser显示文摘Pukhov A 2001Phys Rev Lett2001,86,:1
12Multiphonon relaxation rates measurements and theoretical calculations in the frame of non-linear and non-Coulomb model of a rare-earth ion-ligand interaction显示文摘BASIEV T T ORLOVSII Yu V PUKHOV K K 1996Journal of Luminescence1996,68,12:1
13Three-dimensional simulation of ion acceleration from a foil irradiated by a short-pulse laser显示文摘Pukhov A 2001Phys Rev Lett2001,86,:1
14Temporal structure of attosecond pulses from intense laser atom interactions显示文摘Pukhov A Gordienko S Baeva T 2003Phys Rev Lett2003,91,17:1
15Laser wake field acceleration: the highly non-linear broken-wave regime显示文摘A. Pukhov J. Meyer-ter-Vehn 2002Applied Physics B Lasers and Optics (-)2002,,4:1
16Radiative transitions in nanocrystals显示文摘Konstantin K. Pukhov Tasoltan T. Basiev 2010Optical Materials2010,,12:1
17Differentiation ofhematopoietic stem cells during adaptation to high altitude 显示文摘Andreeva 01 Pukhov VY Daniiarov SB 1987Kosmicheskaia Biologiiai Aviakosmicheskaia Meditsina1987,21,:1
18Self-compression of laser pulses in plasma 显示文摘O Shorokhov A Pukhov I Kostyukov 2003Phys Rev Lett2003,91,26:1
19Metallurgical Application of Hydrogen Containing Gases Produced by the Plasma Coal Gasification Process at an Environmentally Clean Thermal Power Station 显示文摘Frolov V Pukhov A Seitlin M T 1993Int J Hydrogen Energy1993,18,8:1
20Three-dimensional simulations of ion acceleration from a foil irradiated by a short-pulse laser 显示文摘Pukhov A 2001Phys Rev Lett2001,86,:1
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