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Ultrafast probing of magnetic field growth inside a laser-driven solenoid

Authors :
King Fai Farley Law
J. D. Moody
Derek Mariscal
George Swadling
Laurent Divol
A. J. Johnson
David Turnbull
James Ross
S. Patankar
Shinsuke Fujioka
M. C. Levy
Gerald Williams
William Farmer
Otto Landen
A. Hazi
J. Javedani
Clement Goyon
B. B. Pollock
Andreas Kemp
Alexander M. Rubenchik
B. Grant Logan
Dan Haberberger
Source :
Physical Review E. 95
Publication Year :
2017
Publisher :
American Physical Society (APS), 2017.

Abstract

We report on the detection of the time-dependent B-field amplitude and topology in a laser-driven solenoid. The B-field inferred from both proton deflectometry and Faraday rotation ramps up linearly in time reaching 210 ± 35 T at the end of a 0.75-ns laser drive with 1 TW at 351 nm. A lumped-element circuit model agrees well with the linear rise and suggests that the blow-off plasma screens the field between the plates leading to an increased plate capacitance that converts the laser-generated hot-electron current into a voltage source that drives current through the solenoid. ALE3D modeling shows that target disassembly and current diffusion may limit the B-field increase for longer laser drive. Scaling of these experimental results to a National Ignition Facility (NIF) hohlraum target size (∼0.2cm^{3}) indicates that it is possible to achieve several tens of Tesla.

Details

ISSN :
24700053 and 24700045
Volume :
95
Database :
OpenAIRE
Journal :
Physical Review E
Accession number :
edsair.doi.dedup.....c6a41e575444093a9a82dfd57d0eb9a0