Study of the formation, stability, and X-ray emission of the Z-pinch formed during implosion of fiber arrays at the Angara-5-1 facility


Citar

Texto integral

Acesso aberto Acesso aberto
Acesso é fechado Acesso está concedido
Acesso é fechado Somente assinantes

Resumo

Results from experimental studies on the implosion of arrays made of kapron fibers coated with different metals (Al, In, Sn, and Bi) are presented. It is shown that the power, total energy, and spectrum of radiation emitted by the imploding array depend on the number of metallized fibers and the mass of the metal layer deposited on them but are independent of the metal characteristics (density, atomic number, etc.). Analysis of frame X-ray images shows that the Z-pinches formed in the implosion of metallized kapron fiber arrays are more stable than those formed in wire arrays and that MHD perturbations in them develop at a slower growth rate. Due to the lower rate of plasma production from kapron fibers, the plasma formed at the periphery of the array forms a layer that plays the role of a hohlraum wall partially trapping soft X-ray emission of the Z-pinch formed in the implosion of the material of the deposited metal layer. The closure of the anode aperture doubles the energy of radiation emitted in the radial direction.

Sobre autores

V. Aleksandrov

Troitsk Institute for Innovation and Fusion Research, Troitsk

Email: griar@triniti.ru
Rússia, Moscow, 142190

G. Volkov

Troitsk Institute for Innovation and Fusion Research, Troitsk

Email: griar@triniti.ru
Rússia, Moscow, 142190

E. Grabovski

Troitsk Institute for Innovation and Fusion Research, Troitsk

Email: griar@triniti.ru
Rússia, Moscow, 142190

A. Gritsuk

Troitsk Institute for Innovation and Fusion Research, Troitsk

Autor responsável pela correspondência
Email: griar@triniti.ru
Rússia, Moscow, 142190

Ya. Laukhin

Troitsk Institute for Innovation and Fusion Research, Troitsk

Email: griar@triniti.ru
Rússia, Moscow, 142190

K. Mitrofanov

Troitsk Institute for Innovation and Fusion Research, Troitsk

Email: griar@triniti.ru
Rússia, Moscow, 142190

G. Oleinik

Troitsk Institute for Innovation and Fusion Research, Troitsk

Email: griar@triniti.ru
Rússia, Moscow, 142190

I. Frolov

Troitsk Institute for Innovation and Fusion Research, Troitsk

Email: griar@triniti.ru
Rússia, Moscow, 142190

A. Shevel’ko

Lebedev Physical Institute

Email: griar@triniti.ru
Rússia, Moscow, 119991

V. Barsuk

Troitsk Institute for Innovation and Fusion Research, Troitsk

Email: griar@triniti.ru
Rússia, Moscow, 142190

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML

Declaração de direitos autorais © Pleiades Publishing, Ltd., 2016