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Direct measurement of kilo-tesla level magnetic field generated with laser-driven capacitor-coil target by proton deflectometry

Authors :
Kotaro Kondo
Zhe Zhang
Yasunobu Arikawa
Akifumi Yogo
Alessio Morace
S. Lee
Kazuki Matsuo
Hiroshi Azechi
Sadaoki Kojima
Joao Santos
Mathieu Bailly-Grandvaux
Shinsuke Fujioka
X. Vaisseau
King Fai Farley Law
Shohei Sakata
C. Bellei
Source :
Applied Physics Letters. 108:091104
Publication Year :
2016
Publisher :
AIP Publishing, 2016.

Abstract

A kilo-tesla level, quasi-static magnetic field (B-field), which is generated with an intense laser-driven capacitor-coil target, was measured by proton deflectometry with a proper plasma shielding. Proton deflectometry is a direct and reliable method to diagnose strong, mm3-scale laser-produced B-field; however, this was not successful in the previous experiment. A target-normal-sheath-accelerated proton beam is deflected by Lorentz force in the laser-produced magnetic field with the resulting deflection pattern recorded on a radiochromic film stack. A 610 ± 30 T of B-field amplitude was inferred by comparing the experimental proton pattern with Monte-Carlo calculations. The amplitude and temporal evolutions of the laser-generated B-field were also measured by a differential magnetic probe, independently confirming the proton deflectometry measurement results.

Details

ISSN :
10773118 and 00036951
Volume :
108
Database :
OpenAIRE
Journal :
Applied Physics Letters
Accession number :
edsair.doi...........47ce6388a77f0f8a9790689b18d7e2d4
Full Text :
https://doi.org/10.1063/1.4943078