Pulsed magnetic field generation system for laser-plasma research
Applied Physics
2021-12-22 v1
Abstract
An up to 15 T pulsed magnetic field generator in a volume of a few cubic centimeters has been created for experiments with magnetized laser plasma. The magnetic field is created by a pair of coils placed in a sealed reservoir with liquid nitrogen, which is installed in a vacuum chamber with a laser target. The bearing body provides the mechanical strength of the system both in the case of co-directional and oppositely connected coils. The configuration of the housing allows laser radiation to be introduced into the working area between the coils in a wide range of directions and focusing angles, to place targets away from the symmetry axis of the magnetic system, and to irradiate several targets simultaneously.
Cite
@article{arxiv.2011.12135,
title = {Pulsed magnetic field generation system for laser-plasma research},
author = {A. G. Luchinin and V. A. Malyshev and E. A. Kopelovich and K. F. Burdonov and M. E. Guschin and M. V. Morozkin and M. D. Proyavin and R. M. Rozental and A. A. Soloviev and M. V. Starodubtsev and A. P. Fokin and J. Fuchs and M. Yu. Glyavin},
journal= {arXiv preprint arXiv:2011.12135},
year = {2021}
}