Brilliant GeV Gamma-ray flash from Inverse Compton Scattering in QED Regime
Abstract
An all-optical scheme is proposed for studying a laser-plasma based incoherent photon emission from inverse Compton scattering in quantum electrodynamic (QED) regime. A theoretical model is presented to explain the coupling effect among radiation reaction trapping, self-generated magnetic field and spiral attractor in phase space, which guarantees the energy and angular momentum (AM) transformation from electromagnetic fields to particles. Taking advantage of a prospective 10W/cm laser facility, 3D Particle-in-cell (PIC) simulations manifest the present gamma-ray flash with an unprecedented power of multi-petawatt (PW) and brightness of 1.710photons/s/mm/mrad/0.1bandwidth (at 1GeV). These results bode well for new research direction in particle physics and laboratory astrophysics while exploring laser plasma interaction.
Keywords
Cite
@article{arxiv.1706.01615,
title = {Brilliant GeV Gamma-ray flash from Inverse Compton Scattering in QED Regime},
author = {Zheng Gong and Ronghao Hu and Haiyang Lu and Jinqing Yu and Chia-erh Chen and Xiantu He and Xueqing Yan},
journal= {arXiv preprint arXiv:1706.01615},
year = {2018}
}