activity
20142024
most citedCapturing relativistic wake eld structures in plasmas using ultrashort high-energy electrons as a probe

38 citations · 47 across the 5 of their papers we have counts for

collaborators

5 papers

physics.plasm-ph2024

Thermal Weibel instability induced magnetic fields co-exist with linear wakes in laser-ionized plasmas

Yipeng Wu, Audrey Farrell, Mitchell Sinclair +12

When a moderately intense, few-picoseconds long laser pulse ionizes gas to produce an underdense plasma column, a linear relativistic plasma wave or wake can be excited by the self…

physics.acc-ph2023

Wakefield Generation in Hydrogen and Lithium Plasmas at FACET-II: Diagnostics and First Beam-Plasma Interaction Results

D. Storey, C. Zhang, P. San Miguel Claveria +28

Plasma Wakefield Acceleration (PWFA) provides ultrahigh acceleration gradients of 10s of GeV/m, providing a novel path towards efficient, compact, TeV-scale linear colliders and hi…

physics.plasm-ph201638 cited

Capturing relativistic wake eld structures in plasmas using ultrashort high-energy electrons as a probe

C. J. Zhang, J. F. Hua, X. L. Xu +8

A new method capable of capturing coherent electric field structures propagating at nearly the speed of light in plasma with a time resolution as small as a few femtoseconds is pro…

physics.plasm-ph2016

Femtosecond probing of light-speed plasma wakefields by using a relativistic electron bunch

C. J. Zhang, J. F. Hua, Y. Wan +11

Relativistic wakes produced by intense laser or particle beams propagating through plasmas are being considered as accelerators for next generation of colliders and coherent light…

physics.acc-ph20149 cited

Generating 10~40MeV high quality monoenergetic electron beams using a 5TW 60fs laser at Tsinghua University

J. F. Hua, L. X. Yan, C. H. Pai +10

A unique facility for laser plasma physics and advanced accelerator research has been built recently at Tsinghua Universtiy. This system is based on Tsinghua Thomson scattering X-r…