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Non-Maxwellian electron distributions resulting from direct laser acceleration in near-critical plasmas 被引量:4
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作者 T.Toncian C.Wang +17 位作者 E.McCary A.Meadows A.V.Arefiev J.Blakeney K.Serratto D.Kuk C.Chester R.Roycroft L.Gao H.Fu X.Q.Yan J.Schreiber I.Pomerantz A.Bernstein H.Quevedo G.Dyer T.Ditmire B.M.Hegelich 《Matter and Radiation at Extremes》 SCIE EI CAS 2016年第1期82-87,共6页
The irradiation of few-nm-thick targets by a finite-contrast high-intensity short-pulse laser results in a strong pre-expansion of these targets at the arrival time of the main pulse.The targets decompress to near and... The irradiation of few-nm-thick targets by a finite-contrast high-intensity short-pulse laser results in a strong pre-expansion of these targets at the arrival time of the main pulse.The targets decompress to near and lower than critical densities with plasmas extending over few micrometers,i.e.multiple wavelengths.The interaction of the main pulse with such a highly localized but inhomogeneous target leads to the generation of a short channel and further self-focusing of the laser beam.Experiments at the Glass Hybrid OPCPA Scaled Test-bed(GHOST)laser system at University of Texas,Austin using such targets measured non-Maxwellian,peaked electron distribution with large bunch charge and high electron density in the laser propagation direction.These results are reproduced in 2D PIC simulations using the EPOCH code,identifying direct laser acceleration(DLA)[1]as the responsible mechanism.This is the first time that DLA has been observed to produce peaked spectra as opposed to broad,Maxwellian spectra observed in earlier experiments[2].This high-density electrons have potential applications as injector beams for a further wakefield acceleration stage as well as for pump-probe applications. 展开更多
关键词 direct laser acceleration Electron acceleration Near critical plasmas PIC simulations
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Electron acceleration by tightly focused radially polarized few-cycle laser pulses 被引量:1
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作者 Liu Jin-Lu Sheng Zheng-Ming Zheng Jun 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第2期278-285,共8页
Within the framework of plane-wave angular spectrum analysis of the electromagnetic field structure, a solution valid for tightly focused radially polarized few-cycle laser pulses propagating in vacuum is presented. T... Within the framework of plane-wave angular spectrum analysis of the electromagnetic field structure, a solution valid for tightly focused radially polarized few-cycle laser pulses propagating in vacuum is presented. The resulting field distribution is significantly different from that based on the paraxial approximation for pulses with either small or large beam diameters. We compare the electron accelerations obtained with the two solutions and find that the energy gain obtained with our new solution is usually much larger than that with the paraxial approximation solution. 展开更多
关键词 radially polarized laser pulses few-cycle pulses plane-wave angular spectrum analysis direct laser acceleration of electrons
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Laser-driven relativistic electron dynamics in a cylindrical plasma channel
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作者 Pan-Fei Geng Wen-Juan Lv +2 位作者 Xiao-Liang Li Rong-An Tang Ju-Kui Xue 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第3期314-320,共7页
The energy and trajectory of the electron, which is irradiated by a high-power laser pulse in a cylindrical plasma channel with a uniform positive charge and a uniform negative current, have been analyzed in terms of ... The energy and trajectory of the electron, which is irradiated by a high-power laser pulse in a cylindrical plasma channel with a uniform positive charge and a uniform negative current, have been analyzed in terms of a single-electron model of direct laser acceleration. We find that the energy and trajectory of the electron strongly depend on the positive charge density, the negative current density, and the intensity of the laser pulse. The electron can be accelerated significantly only when the positive charge density, the negative current density, and the intensity of the laser pulse are in suitable ranges due to the dephasing rate between the wave and electron motion. Particularly, when their values satisfy a critical condition. the electron can stay in phase with the laser and gain the largest energy from the laser. With the enhancement of the electron energy, strong modulations of the relativistic factor cause a considerable enhancement of the electron transverse oscillations across the channel, which makes the electron trajectory become essentially three-dimensional, even if it is flat at the early stage of the acceleration. 展开更多
关键词 laser-plasma interaction direct laser acceleration cylindrical plasma channel
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Direct acceleration of an annular attosecond electron slice driven by near-infrared Laguerre-Gaussian laser
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作者 C.Jiang W.P.Wang +4 位作者 S.Weber H.Dong Y.X.Leng R.X.Li Z.Z.Xu 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2021年第3期79-86,共8页
A new near-infrared direct acceleration mechanism driven by Laguerre-Gaussian laser is proposed to stably accelerate and concentrate electron slice both in longitudinal and transversal directions in vacuum.Three-dimen... A new near-infrared direct acceleration mechanism driven by Laguerre-Gaussian laser is proposed to stably accelerate and concentrate electron slice both in longitudinal and transversal directions in vacuum.Three-dimensional simulations show that a 2-μm circularly polarized LG_(p)^(l)(p=0,l=1,σ_(2)=-1)laser can directly manipulate attosecond electron slices in additional dimensions(angular directions)and give them annular structures and angular momentums.These annular vortex attosecond electron slices are expected to have some novel applications such as in the collimation of antiprotons in conventional linear accelerators,edge-enhancement electron imaging,structured X-ray generation,and analysis and manipulation of nanomaterials. 展开更多
关键词 annular electron slice direct laser acceleration Laguerre–Gaussian lasers near-infrared laser
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