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High repetition rate exploration of the Biermann battery effect in laser produced plasmas over large spatial regions
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作者 J.J.Pilgram M.B.P.Adams +7 位作者 c.g.constantin P.V.Heuer S.Ghazaryan M.Kaloyan R.S.Dorst D.B.Schaeffer P.Tzeferacos C.Niemann 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2022年第2期42-51,共10页
In this paper we present a high repetition rate experimental platform for examining the spatial structure and evolution of Biermann-generated magnetic fields in laser-produced plasmas.We have extended the work of prio... In this paper we present a high repetition rate experimental platform for examining the spatial structure and evolution of Biermann-generated magnetic fields in laser-produced plasmas.We have extended the work of prior experiments,which spanned over millimeter scales,by spatially measuring magnetic fields in multiple planes on centimeter scales over thousands of laser shots.Measurements with magnetic fiux probes show azimuthally symmetric magnetic fields that range from 60 G at 0.7 cm from the target to 7 G at 4.2 cm from the target.The expansion rate of the magnetic fields and evolution of current density structures are also mapped and examined.Electron temperature and density of the laser-produced plasma are measured with optical Thomson scattering and used to directly calculate a magnetic Reynolds number of 1.4×10^(4),confirming that magnetic advection is dominant at≥1.5 cm from the target surface.The results are compared to FLASH simulations,which show qualitative agreement with the data. 展开更多
关键词 Biermann battery high repetition rate laser-produced plasma
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A platform for high-repetition-rate laser experiments on the Large Plasma Device
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作者 D.B.Schaeffer L.R.Hofer +3 位作者 E.N.Knall E V.Heuer c.g.constantin C.Niemann 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2018年第2期32-37,共6页
We present a new experimental platform for studying laboratory astrophysics that combines a high-intensity, highrepetition-rate laser with the Large Plasma Device at the University of California, Los Angeles. To demon... We present a new experimental platform for studying laboratory astrophysics that combines a high-intensity, highrepetition-rate laser with the Large Plasma Device at the University of California, Los Angeles. To demonstrate the utility of this platform, we show the first results of volumetric, highly repeatable magnetic field and electrostatic potential measurements, along with derived quantities of electric field, charge density and current density, of the interaction between a super-Alfv′enic laser-produced plasma and an ambient, magnetized plasma. 展开更多
关键词 high energy density physics plasmas astrophysics
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