Magneto-inertial fusion with laser compression of a magnetized spherical target

被引:0
|
作者
I. Yu. Kostyukov
S. V. Ryzhkov
机构
[1] Russian Academy of Sciences,Institute of Applied Physics
[2] Bauman Moscow State Technical University,undefined
来源
Plasma Physics Reports | 2011年 / 37卷
关键词
Plasma Physic Report; Inertial Confinement Fusion; Spherical Target; Laser Driver; High Power Laser Beam;
D O I
暂无
中图分类号
学科分类号
摘要
The paper is devoted to the principles of magneto-inertial fusion and laser-plasma methods of generation of a Megagauss field during spherical implosion of a magnetized target. A model based on a magnetic confinement system, namely, a cusp configuration with inertial compression of the target by a laser driver, is developed. The dynamics of plasma in a cusp compressed under the effect of laser beams is precalculated. Analytical and numerical estimates of the particle number and magnetic field intensity during magneto-inertial plasma compression are obtained. The problems of irradiation of a spherically closed volume by a high-energy laser pulse are discussed.
引用
收藏
页码:1092 / 1098
页数:6
相关论文
共 50 条
  • [1] Magneto-inertial fusion with laser compression of a magnetized spherical target
    Kostyukov, I. Yu
    Ryzhkov, S. V.
    PLASMA PHYSICS REPORTS, 2011, 37 (13) : 1092 - 1098
  • [2] Compression of magnetized target in the magneto-inertial fusion
    Kuzenov, V. V.
    III INTERNATIONAL CONFERENCE ON LASER AND PLASMA RESEARCHES AND TECHNOLOGIES, 2018, 941
  • [3] ANALYSIS OF THE COMPRESSION AND HEATING OF MAGNETIZED PLASMA TARGETS FOR MAGNETO-INERTIAL FUSION
    Ryzhkov, S. V.
    Chirkov, A. Yu
    Ivanov, A. A.
    FUSION SCIENCE AND TECHNOLOGY, 2013, 63 (1T) : 135 - 138
  • [4] Magnetized Plasma Target for Plasma-Jet-Driven Magneto-Inertial Fusion
    Hsu, Scott C.
    Langendorf, Samuel J.
    JOURNAL OF FUSION ENERGY, 2019, 38 (01) : 182 - 198
  • [5] Magnetized Plasma Target for Plasma-Jet-Driven Magneto-Inertial Fusion
    Scott C. Hsu
    Samuel J. Langendorf
    Journal of Fusion Energy, 2019, 38 : 182 - 198
  • [6] Magneto-Inertial Fusion
    G. A. Wurden
    S. C. Hsu
    T. P. Intrator
    T. C. Grabowski
    J. H. Degnan
    M. Domonkos
    P. J. Turchi
    E. M. Campbell
    D. B. Sinars
    M. C. Herrmann
    R. Betti
    B. S. Bauer
    I. R. Lindemuth
    R. E. Siemon
    R. L. Miller
    M. Laberge
    M. Delage
    Journal of Fusion Energy, 2016, 35 : 69 - 77
  • [7] Magneto-Inertial Fusion
    Wurden, G. A.
    Hsu, S. C.
    Intrator, T. P.
    Grabowski, T. C.
    Degnan, J. H.
    Domonkos, M.
    Turchi, P. J.
    Campbell, E. M.
    Sinars, D. B.
    Herrmann, M. C.
    Betti, R.
    Bauer, B. S.
    Lindemuth, I. R.
    Siemon, R. E.
    Miller, R. L.
    Laberge, M.
    Delage, M.
    JOURNAL OF FUSION ENERGY, 2016, 35 (01) : 69 - 77
  • [8] Numerical Simulation of the Interaction of a Magneto-Inertial Fusion Target with Plasma and Laser Drivers
    Kuzenov, V. V.
    Ryzhkov, S. V.
    HIGH TEMPERATURE, 2022, 60 (SUPPL 1) : S7 - S15
  • [9] Numerical Simulation of the Interaction of a Magneto-Inertial Fusion Target with Plasma and Laser Drivers
    V. V. Kuzenov
    S. V. Ryzhkov
    High Temperature, 2022, 60 : S7 - S15
  • [10] Calculation of the Radiation Specifications of the Target Plasma in Magneto-Inertial Fusion
    V. V. Kuzenov
    S. V. Ryzhkov
    Physics of Atomic Nuclei, 2018, 81 : 1611 - 1617