Laboratory Simulations of the Radial Distribution of the Toroidal Magnetic Field in an Axial Jet from a Young Stellar Object


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Results from experiments on the radial distribution of the magnetic fields in axial plasma flows formed during the compression of a plasma–current sheath carried out at the KPF-4-PHOENIX plasmafocus installation are presented. The plasma flows were generated in a discharge with stationary filling of the chamber with a working gas of argon or hydrogen, and also with a pulsed injection of argon. Analysis of the radial profiles of the magnetic field distribution and their time variations are used to localize regions of trappedmagnetic field, as well as regions where a return current flows at the periphery of the plasma flow. It is shown that the transverse (radial) size of the plasma flow depends on the density of the ambient medium (background gas) through which it propagates. These experiments were carried out in the framework of a project on laboratory simulations of non-relativistic jets from young stars.

Sobre autores

V. Krauz

NRC “Kurchatov Institute,”

Autor responsável pela correspondência
Email: krauz_vi@nrcki.ru
Rússia, Moscow, 123182

K. Mitrofanov

SRC RF Troitsk Institute for Innovation and Fusion Reseach

Email: krauz_vi@nrcki.ru
Rússia, Troitsk, Moscow, 142190

D. Voitenko

SUE Sukhum Physical Technical Institute

Email: krauz_vi@nrcki.ru
Geórgia, Sukhum

G. Astapenko

SUE Sukhum Physical Technical Institute

Email: krauz_vi@nrcki.ru
Geórgia, Sukhum

A. Markoliya

SUE Sukhum Physical Technical Institute

Email: krauz_vi@nrcki.ru
Geórgia, Sukhum

A. Timoshenko

SUE Sukhum Physical Technical Institute

Email: krauz_vi@nrcki.ru
Geórgia, Sukhum

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