activity
20182021
most citedRelativistically transparent magnetic filaments: scaling laws, initial results and prospects for strong-field QED studies

1 citations · 1 across the 4 of their papers we have counts for

collaborators

6 papers

physics.acc-ph2021

Carrier-Envelope Phase Controlled Electron Injection into a Laser-Wakefield Accelerator

J. Kim, T. Wang, V. Khudik +1

Single cycle laser pulse propagating inside a plasma causes controllable asymmetric plasma electron expulsion from laser according to laser carrier envelope phase (CEP) and forms a…

physics.acc-ph2021

Two-Pulse Direct Laser Acceleration in a Laser-Driven Plasma Accelerator

B. Bowers, M. LaBerge, A. Koehler +10

We present methods and preliminary observations of two pulse Direct Laser Acceleration in a Laser-Driven Plasma Accelerator. This acceleration mechanism uses a second co-propagatin…

physics.plasm-ph20211 cited

Relativistically transparent magnetic filaments: scaling laws, initial results and prospects for strong-field QED studies

H. G. Rinderknecht, T. Wang, A. Laso Garcia +10

Relativistic transparency enables volumetric laser interaction with overdense plasmas and direct laser acceleration of electrons to relativistic velocities. The dense electron curr…

physics.plasm-ph2021

Towards the Optimisation of Direct Laser Acceleration

A. E. Hussein, A. V. Arefiev, T. Batson +13

Experimental measurements using the OMEGA EP laser facility demonstrated direct laser acceleration (DLA) of electron beams to (505 75) MeV with (140 30)~nC of charge fr…

physics.plasm-ph2019

Collimated gamma-ray beams from structured laser-irradiated targets -- how to increase the efficiency without increasing the laser intensity

O. Jansen, T. Wang, Z. Gong +5

Using three-dimensional kinetic simulations, we examine the emission of collimated gamma-ray beams from structured laser-irradiated targets with a pre-filled cylindrical channel. T…

physics.plasm-ph2018

Forward sliding-swing acceleration: electron acceleration by high-intensity lasers in strong plasma magnetic fields

Z. Gong, F. Mackenroth, T. Wang +3

A high-intensity laser beam propagating through a dense plasma drives a strong current that robustly sustains a strong quasi-static Mega Tesla-level azimuthal magnetic field. The t…