activity
20162023
most citedRelativistic laser driven electron accelerator using micro-channel plasma targets

61 citations · 91 across the 13 of their papers we have counts for

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Showing 2019Show all

6 papers · 1 filter

physics.plasm-ph2019

Generalizing the Sokolov-Ternov effect for radiative polarization in intense laser fields

X. S. Geng, Z. G. Bu, Y. T. Wu +7

A consistent description of the radiative polarization for relativistic electrons in intense laser fields is derived by generalizing the Sokolov-Ternov effect in general field stru…

physics.plasm-ph2019

Driving positron beam acceleration with coherent transition radiation

Zhangli Xu, Longqing Yi, Baifei Shen +6

Positron acceleration in plasma wakefield faces significant challenges since the positron beam must be pre-generated and precisely coupled into the wakefield, and most critically,…

physics.plasm-ph2019

Polarized electron-beam acceleration driven by vortex laser pulses

Yitong Wu, Liangliang Ji, Xuesong Geng +15

We propose a new approach based on an all-optical set-up for generating relativistic polarized electron beams via vortex Laguerre-Gaussian (LG) laser-driven wakefield acceleration.…

physics.optics20192 cited

Polarization sensitive laser intensity inside femtosecond filament in air

Xuan Zhang, Tie-Jun Wang, Hao Guo +9

Polarization dependence on clamping intensity inside femtosecond filament was experimentally measured in air. By tuning the laser pulse ellipse from linear polarization to circular…

physics.plasm-ph2019

Radiative deflection by spin effect in the quantum radiation-reaction regime

X. S. Geng, L. L. Ji, B. F. Shen +11

The colliding between ultra-relativistic electrons and an ultra-intense laser pulse is a powerful approach to testify the physics in strong-field QED regime. By considering spin-de…

physics.plasm-ph201961 cited

Relativistic laser driven electron accelerator using micro-channel plasma targets

Joseph Snyder, Liangliang Ji, Kevin M. George +11

We present an experimental demonstration of the efficient acceleration of electrons beyond 60 MeV using micro-channel plasma targets. We employed a high-contrast, 2.5 J, 32 fs shor…