Literature DB >> 25503788

Time-resolved compression of a capsule with a cone to high density for fast-ignition laser fusion.

W Theobald1, A A Solodov1, C Stoeckl1, K S Anderson1, F N Beg2, R Epstein1, G Fiksel1, E M Giraldez3, V Yu Glebov1, H Habara4, S Ivancic1, L C Jarrott2, F J Marshall1, G McKiernan1, H S McLean5, C Mileham1, P M Nilson1, P K Patel5, F Pérez5, T C Sangster1, J J Santos6, H Sawada7, A Shvydky1, R B Stephens3, M S Wei3.   

Abstract

The advent of high-intensity lasers enables us to recreate and study the behaviour of matter under the extreme densities and pressures that exist in many astrophysical objects. It may also enable us to develop a power source based on laser-driven nuclear fusion. Achieving such conditions usually requires a target that is highly uniform and spherically symmetric. Here we show that it is possible to generate high densities in a so-called fast-ignition target that consists of a thin shell whose spherical symmetry is interrupted by the inclusion of a metal cone. Using picosecond-time-resolved X-ray radiography, we show that we can achieve areal densities in excess of 300 mg cm(-2) with a nanosecond-duration compression pulse--the highest areal density ever reported for a cone-in-shell target. Such densities are high enough to stop MeV electrons, which is necessary for igniting the fuel with a subsequent picosecond pulse focused into the resulting plasma.

Year:  2014        PMID: 25503788     DOI: 10.1038/ncomms6785

Source DB:  PubMed          Journal:  Nat Commun        ISSN: 2041-1723            Impact factor:   14.919


  1 in total

1.  Magnetized fast isochoric laser heating for efficient creation of ultra-high-energy-density states.

Authors:  Shohei Sakata; Seungho Lee; Hiroki Morita; Tomoyuki Johzaki; Hiroshi Sawada; Yuki Iwasa; Kazuki Matsuo; King Fai Farley Law; Akira Yao; Masayasu Hata; Atsushi Sunahara; Sadaoki Kojima; Yuki Abe; Hidetaka Kishimoto; Aneez Syuhada; Takashi Shiroto; Alessio Morace; Akifumi Yogo; Natsumi Iwata; Mitsuo Nakai; Hitoshi Sakagami; Tetsuo Ozaki; Kohei Yamanoi; Takayoshi Norimatsu; Yoshiki Nakata; Shigeki Tokita; Noriaki Miyanaga; Junji Kawanaka; Hiroyuki Shiraga; Kunioki Mima; Hiroaki Nishimura; Mathieu Bailly-Grandvaux; João Jorge Santos; Hideo Nagatomo; Hiroshi Azechi; Ryosuke Kodama; Yasunobu Arikawa; Yasuhiko Sentoku; Shinsuke Fujioka
Journal:  Nat Commun       Date:  2018-09-26       Impact factor: 14.919

  1 in total

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