arXiv · 2110.13030
Extremely brilliant crystal-based light sources
Abstract
Brilliance of novel gamma-ray Crystal-based Light Sources (CLS) that can be constructed through exposure of oriented crystals to beams of ultra-relativistic charged particles is calculated basing on the atomistic scale numerical modeling of the channeling process. In an exemplary case study, the brilliance of radiation emitted in a diamond-based Crystalline Undulator LS by a 10 GeV positron beam available at present at the SLAC facility is computed. Intesity of CU radiation in the photon energy range 10^0 - 10^1 MeV, which is inaccessible to conventional synchrotrons, undulators and XFELs, greatly exceeds that of laser-Compton scattering LSs and can be higher than predicted in the Gamma Factory proposal to CERN. Construction of novel CLSs is a challenging task which constitutes a highly interdisciplinary field entangling a broad range of correlated activities. CLSs provide a low-cost altenative to conventional LSs and have enomorous number of applications.
Explore related subjects
Keep this discovery
Gennady B. Sushko, Andrei V. Korol, Andrey V. Solov'yov. 2021-10-25. Extremely brilliant crystal-based light sources. https://doi.org/10.1140/epjd%2Fs10053-022-00502-7
Cite the original work for its findings. Save a collection to share your selection of sources.