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Ultrahigh-contrast kilojoule-class petawatt LFEX laser using a plasma mirror

Authors :
Yasunobu Arikawa
Sadaoki Kojima
Alessio Morace
Shohei Sakata
Takayuki Gawa
Yuki Taguchi
Yuki Abe
Zhe Zhang
Xavier Vaisseau
Seung Ho Lee
Kazuki Matsuo
Shota Tosaki
Masayasu Hata
Koji Kawabata
Yuhei Kawakami
Masato Ishida
Koichi Tsuji
Satoshi Matsuo
Noboru Morio
Tetsuji Kawasaki
Shigeki Tokita
Yoshiki Nakata
Takahisa Jitsuno
Noriaki Miyanaga
Junji Kawanaka
Hideo Nagatomo
Akifumi Yogo
Mitsuo Nakai
Hiroaki Nishimura
Hiroyuki Shiraga
Shinsuke Fujioka
null FIREX Group
null LFEX Group
Hiroshi Azechi
Atsushi Sunahara
Tomoyuki Johzaki
Tetsuo Ozaki
Hitoshi Sakagami
Akito Sagisaka
Koichi Ogura
Alexander S. Pirozhkov
Masaharu Nishikino
Kiminori Kondo
Shunsuke Inoue
Kensuke Teramoto
Masaki Hashida
Shuji Sakabe
Source :
Applied Optics. 55:6850
Publication Year :
2016
Publisher :
The Optical Society, 2016.

Abstract

Laser pulse contrast exceeding 1011 was demonstrated on a kilojoule-class petawatt laser for fast ignition experiments (LFEX) laser system [J. Phys. IV France133, 81 (2006)10.1051/jp4:2006133016] by implementing a 2 in. plasma mirror. Laser beams of up to 1.2 kJ striking the plasma mirror with a pulse duration of 1.5 ps were reflected and focused onto a target without significant distortions in the focal spot. Transmitted light from the plasma mirror reveals that it has a high reflectivity 2 ps before the main peak. The estimated laser pulse contrast at the target was 1011 at 1 ns before the main peak. No preformed plasma was observed with an optical interferometry diagnostics, but in the experiment without a plasma mirror a preplasma was clearly observed. The energetic proton was generated from a 0.1 μm thick CH film showing excellent pulse contrast. This technique constitutes a promising method to enhance the LFEX laser system performance in fast ignition experiments.

Details

ISSN :
15394522 and 00036935
Volume :
55
Database :
OpenAIRE
Journal :
Applied Optics
Accession number :
edsair.doi.dedup.....19901cc1ec44a37d0191b5340261510b