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Laser-generated supersonic plasma jets and shocks in a transverse magnetic field

Authors :
Bohlin, H.
(0000-0002-9859-2408) Brack, F.-E.
Cervenak, M.
Chodukowski, T.
Cikhardt, J.
Dostál, J.
Dudžák, R.
Hubner, J.
Huo, W.
Jelinek, S.
Klír, D.
(0000-0002-0275-9892) Kroll, F.
Krupka, M.
Krůs, M.
Pisarczyk, T.
Rusiniak, Z.
(0000-0003-0390-7671) Schramm, U.
T.-H, N.-B.
Weber, S.
Zaraś-Szydłowska, A.
(0000-0003-3926-409X) Zeil, K.
Kumar, D.
Schlegel, T.
Tikhonchuk, V.
Bohlin, H.
(0000-0002-9859-2408) Brack, F.-E.
Cervenak, M.
Chodukowski, T.
Cikhardt, J.
Dostál, J.
Dudžák, R.
Hubner, J.
Huo, W.
Jelinek, S.
Klír, D.
(0000-0002-0275-9892) Kroll, F.
Krupka, M.
Krůs, M.
Pisarczyk, T.
Rusiniak, Z.
(0000-0003-0390-7671) Schramm, U.
T.-H, N.-B.
Weber, S.
Zaraś-Szydłowska, A.
(0000-0003-3926-409X) Zeil, K.
Kumar, D.
Schlegel, T.
Tikhonchuk, V.
Source :
Plasma Physics and Controlled Fusion 64(2022), 085003
Publication Year :
2022

Abstract

The influence of a transverse magnetic field on the formation and evolution of supersonic plasma jets and shocks was studied experimentally, and compared with 3D numerical simulations. An improved jet collimation was seen due to the change in the magnetic field topology restricting the radial expansion of the ablated plasma. The magnetic field was also shown to strongly affect the shock structures, both indirectly through the modified jet geometry, as well as due to a compression of the field lines in the shock region. The interaction characteristics were found to depend on the relative contribution of the magnetic and plasma pressure in balancing the ram pressure of the jet.

Details

Database :
OAIster
Journal :
Plasma Physics and Controlled Fusion 64(2022), 085003
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1415626254
Document Type :
Electronic Resource