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


ABSTRACT: Fast isochoric heating of a pre-compressed plasma core with a high-intensity short-pulse laser is an attractive and alternative approach to create ultra-high-energy-density states like those found in inertial confinement fusion (ICF) ignition sparks. Laser-produced relativistic electron beam (REB) deposits a part of kinetic energy in the core, and then the heated region becomes the hot spark to trigger the ignition. However, due to the inherent large angular spread of the produced REB, only a small portion of the REB collides with the core. Here, we demonstrate a factor-of-two enhancement of laser-to-core energy coupling with the magnetized fast isochoric heating. The method employs a magnetic field of hundreds of Tesla that is applied to the transport region from the REB generation zone to the core which results in guiding the REB along the magnetic field lines to the core. This scheme may provide more efficient energy coupling compared to the conventional ICF scheme.

SUBMITTER: Sakata S 

PROVIDER: S-EPMC6158241 | biostudies-literature | 2018 Sep

REPOSITORIES: biostudies-literature

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

Sakata Shohei S   Lee Seungho S   Morita Hiroki H   Johzaki Tomoyuki T   Sawada Hiroshi H   Iwasa Yuki Y   Matsuo Kazuki K   Law King Fai Farley KFF   Yao Akira A   Hata Masayasu M   Sunahara Atsushi A   Kojima Sadaoki S   Abe Yuki Y   Kishimoto Hidetaka H   Syuhada Aneez A   Shiroto Takashi T   Morace Alessio A   Yogo Akifumi A   Iwata Natsumi N   Nakai Mitsuo M   Sakagami Hitoshi H   Ozaki Tetsuo T   Yamanoi Kohei K   Norimatsu Takayoshi T   Nakata Yoshiki Y   Tokita Shigeki S   Miyanaga Noriaki N   Kawanaka Junji J   Shiraga Hiroyuki H   Mima Kunioki K   Nishimura Hiroaki H   Bailly-Grandvaux Mathieu M   Santos João Jorge JJ   Nagatomo Hideo H   Azechi Hiroshi H   Kodama Ryosuke R   Arikawa Yasunobu Y   Sentoku Yasuhiko Y   Fujioka Shinsuke S  

Nature communications 20180926 1


Fast isochoric heating of a pre-compressed plasma core with a high-intensity short-pulse laser is an attractive and alternative approach to create ultra-high-energy-density states like those found in inertial confinement fusion (ICF) ignition sparks. Laser-produced relativistic electron beam (REB) deposits a part of kinetic energy in the core, and then the heated region becomes the hot spark to trigger the ignition. However, due to the inherent large angular spread of the produced REB, only a sm  ...[more]

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