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First set of gated x-ray imaging diagnostics for the Laser Megajoule facility.

Authors :
Rosch R
Trosseille C
Caillaud T
Allouche V
Bourgade JL
Briat M
Brunel P
Burillo M
Casner A
Depierreux S
Gontier D
Jadaud JP
Le Breton JP
Llavador P
Loupias B
Miquel JL
Oudot G
Perez S
Raimbourg J
Rousseau A
Rousseaux C
Rubbelynck C
Stemmler P
Troussel P
Ulmer JL
Wrobel R
Beauvais P
Pallet M
Prevot V
Source :
The Review of scientific instruments [Rev Sci Instrum] 2016 Mar; Vol. 87 (3), pp. 033706.
Publication Year :
2016

Abstract

The Laser Megajoule (LMJ) facility located at CEA/CESTA started to operate in the early 2014 with two quadruplets (20 kJ at 351 nm) focused on target for the first experimental campaign. We present here the first set of gated x-ray imaging (GXI) diagnostics implemented on LMJ since mid-2014. This set consists of two imaging diagnostics with spatial, temporal, and broadband spectral resolution. These diagnostics will give basic measurements, during the entire life of the facility, such as position, structure, and balance of beams, but they will also be used to characterize gas filled target implosion symmetry and timing, to study x-ray radiography and hydrodynamic instabilities. The design requires a vulnerability approach, because components will operate in a harsh environment induced by neutron fluxes, gamma rays, debris, and shrapnel. Grazing incidence x-ray microscopes are fielded as far as possible away from the target to minimize potential damage and signal noise due to these sources. These imaging diagnostics incorporate microscopes with large source-to-optic distance and large size gated microchannel plate detectors. Microscopes include optics with grazing incidence mirrors, pinholes, and refractive lenses. Spatial, temporal, and spectral performances have been measured on x-ray tubes and UV lasers at CEA-DIF and at Physikalisch-Technische Bundesanstalt BESSY II synchrotron prior to be set on LMJ. GXI-1 and GXI-2 designs, metrology, and first experiments on LMJ are presented here.

Details

Language :
English
ISSN :
1089-7623
Volume :
87
Issue :
3
Database :
MEDLINE
Journal :
The Review of scientific instruments
Publication Type :
Academic Journal
Accession number :
27036783
Full Text :
https://doi.org/10.1063/1.4942930