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Plasma Physics Study and Laser Development for the Fast Ignition Realization Experiment (FIREX) Project

http://hdl.handle.net/10655/2690
http://hdl.handle.net/10655/2690
db296a63-d0c7-4238-adce-1f8d69280476
Item type 研究報告書 / Research Paper(1)
公開日 2010-02-05
タイトル
タイトル Plasma Physics Study and Laser Development for the Fast Ignition Realization Experiment (FIREX) Project
言語 en
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_18ws
資源タイプ research report
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 "Azechi, H.

× "Azechi, H.

en "Azechi, H.

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Mima, K.

× Mima, K.

en Mima, K.

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Fujimoto, Y.

× Fujimoto, Y.

en Fujimoto, Y.

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Fujioka, S.

× Fujioka, S.

en Fujioka, S.

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Homma, H.

× Homma, H.

en Homma, H.

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Jitsuno, T.

× Jitsuno, T.

en Jitsuno, T.

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Johzaki, T.

× Johzaki, T.

en Johzaki, T.

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Koga, M.

× Koga, M.

en Koga, M.

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Kawanaka, J.

× Kawanaka, J.

en Kawanaka, J.

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Miyanaga, N.

× Miyanaga, N.

en Miyanaga, N.

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Murakami, M.

× Murakami, M.

en Murakami, M.

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Nagatomo, H.

× Nagatomo, H.

en Nagatomo, H.

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Nagai, K.

× Nagai, K.

en Nagai, K.

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Nakai, M.

× Nakai, M.

en Nakai, M.

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Nakamura, T.

× Nakamura, T.

en Nakamura, T.

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Nishihara, K.

× Nishihara, K.

en Nishihara, K.

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Nishimura, H.

× Nishimura, H.

en Nishimura, H.

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Norimatsu, T.

× Norimatsu, T.

en Norimatsu, T.

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Shigemori, K.

× Shigemori, K.

en Shigemori, K.

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Shiraga, H.

× Shiraga, H.

en Shiraga, H.

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Tsubakimoto, K.

× Tsubakimoto, K.

en Tsubakimoto, K.

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Iwamoto, A.

× Iwamoto, A.

en Iwamoto, A.

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Mito, T.

× Mito, T.

en Mito, T.

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Sakagami, H.

× Sakagami, H.

en Sakagami, H.

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Isobe, M.

× Isobe, M.

en Isobe, M.

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Ozaki, T.

× Ozaki, T.

en Ozaki, T.

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Motojima, O.

× Motojima, O.

en Motojima, O.

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Kodama, R.

× Kodama, R.

en Kodama, R.

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Kondo, K.

× Kondo, K.

en Kondo, K.

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Tanaka, K.A.

× Tanaka, K.A.

en Tanaka, K.A.

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Nakao, Y.

× Nakao, Y.

en Nakao, Y.

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Sentoku, Y.

× Sentoku, Y.

en Sentoku, Y.

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Sunahara, A.

× Sunahara, A.

en Sunahara, A.

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Taguchi, T."

× Taguchi, T."

en Taguchi, T."

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抄録
内容記述タイプ Abstract
内容記述 "Since the approval of the first phase of Fast Ignition Realization Experiment (FIREX-I), we have devoted our efforts on designing advanced targets and constructing the world highest-energy Peta Watt laser. The new target design has the following features. The coupling efficiency from the heating laser to the thermal energy of the compressed core plasma can be increased by the two ways:1) Low-Z foam layer on the inner surface of the cone for optimum absorption. 2) Double cone. Electrons generated in the inner surface of the double cone will return by sheathe potential generated between two cones. The implosion performance can be improved by three ways: 3) Low-Z plastic layer on the outer surface of the cone may suppress the expansion of the Au cone that flows into the interior of the compressed core. 4) Br doped plastic ablator may significantly moderate the Rayleigh-Taylor instability, making implosion more stable. 5) Evacuation of the target center to prevent gas jets from destroying the cone tip. For project robustness, we also explore 6) impact ignition scheme that eliminates complexity of laser-plasma interaction while keeping the compactness advantage of fast ignition. The fully integrated fast ignition experiment is scheduled on 2009. If subsequent FIREX-II will start as proposed, the ignition and burn will be demonstrated shortly after the ignition at NIF and LMJ, providing a scientific database of both central and fast ignition."
書誌情報 en : Research Report NIFS-Series

発行日 2008-10-01
報告書番号
NIFS-929
ISSN
収録物識別子タイプ ISSN
収録物識別子 0915-633X
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Cite as

"Azechi, H., Mima, K., Fujimoto, Y., Fujioka, S., Homma, H., Jitsuno, T., Johzaki, T., Koga, M., Kawanaka, J., Miyanaga, N., Murakami, M., Nagatomo, H., Nagai, K., Nakai, M., Nakamura, T., Nishihara, K., Nishimura, H., Norimatsu, T., Shigemori, K., Shiraga, H., Tsubakimoto, K., Iwamoto, A., Mito, T., Sakagami, H., Isobe, M., Ozaki, T., Motojima, O., Kodama, R., Kondo, K., Tanaka, K.A., Nakao, Y., Sentoku, Y., Sunahara, A., Taguchi, T.", 2008, Plasma Physics Study and Laser Development for the Fast Ignition Realization Experiment (FIREX) Project.

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