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20192021
most citedElectron self-injection threshold for the tandem-pulse laser wakefield accelerator

4 citations · 4 across the 2 of their papers we have counts for

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5 papers · 1 filter

physics.plasm-ph2021

Polarized proton acceleration in ultra-intense laser interaction with near critical density plasmas

X. F. Li, P. Gibbon, A. Hützen +4

The production of polarized proton beams with multi-GeV energies in ultra-intense laser interaction with targets is studied with three-dimensional Particle-In-Cell simulations. A n…

physics.plasm-ph2020

A spin-filter for polarized electron acceleration in plasma wakefields

Yitong Wu, Liangliang Ji, Xuesong Geng +7

We propose a filter method to generate electron beams of high polarization from bubble and blow-out wakefield accelerators. The mechanism is based on the idea to identify all elect…

physics.plasm-ph2020

Scaling laws for the (de-)polarization time of relativistic particle beams in strong fields

Johannes Thomas, Anna Hützen, Andreas Lehrach +5

The acceleration of polarized electrons and protons in strong laser and plasma fields is a very attractive option to obtain polarized beams in the GeV range. We investigate the fea…

physics.plasm-ph2020

Spin polarized proton beam generation from gas-jet targets by intense laser pulses

Luling Jin, Meng Wen, Xiaomei Zhang +4

A method of generating spin polarized proton beams from a gas jet by using a multi-petawatt laser is put forward. With currently available techniques of producing pre-polarized mon…

physics.plasm-ph20194 cited

Electron self-injection threshold for the tandem-pulse laser wakefield accelerator

Zahra M. Chitgar, Paul Gibbon, Jürgen Böker +2

A controllable injection scheme is key to producing high quality laser-driven electron beams and X-rays. Self-injection is the most straightforward scheme leading to high current a…