EQUATION OF STATE PROBLEMS IN INERTIAL CONFINEMENT FUSION.

被引:0
|
作者
Eliezer, Shalom [1 ]
Krumbein, Aaron D. [1 ]
Szichman, Henrique [1 ]
Hora, Heinrich [1 ]
机构
[1] Atomic Energy Commission of Israel,, SOREQ Nuclear Research Cent, Yavne,, Isr, Atomic Energy Commission of Israel, SOREQ Nuclear Research Cent, Yavne, Isr
关键词
This work was supported by the Australian Academy of Sciences; the Australian Research Grant Scheme; Grant No. 81/15511; by the Gordon Godfrey Bequest in granting a Gordon Godfrey Visiting Professorship to one of the authors (S.E.). One author (H.H.) expresses his thanks for the kind arrangements by Professor Z. Zinamon at the Weizmann Institute;
D O I
暂无
中图分类号
学科分类号
摘要
引用
收藏
页码:207 / 236
相关论文
共 50 条
  • [1] EQUATION OF STATE PROBLEMS IN INERTIAL CONFINEMENT FUSION
    ELIEZER, S
    KRUMBEIN, AD
    SZICHMAN, H
    HORA, H
    LASER AND PARTICLE BEAMS, 1985, 3 (AUG) : 207 - 236
  • [2] REACTOR DESIGN CONSIDERATIONS FOR INERTIAL CONFINEMENT FUSION.
    Booth, Lawrence A.
    Applications of Cryogenic Technology, 1979, : 65 - 82
  • [3] UNIQUE MATERIALS REQUIREMENTS FOR INERTIAL CONFINEMENT FUSION.
    Simonen, E.P.
    1600, (08):
  • [4] DIRECT ENERGY INPUT TO COMPRESSOR FOR INERTIAL CONFINEMENT FUSION.
    Mohri, Akihiro
    Ikuta, Kazunari
    Tazima, Teruhiko
    Japanese Journal of Applied Physics, Part 1: Regular Papers & Short Notes, 1983, 22 (10): : 1582 - 1586
  • [5] A Review of Equation-of-State Models for Inertial Confinement Fusion Materials
    Gaffney, J. A.
    Hu, S. X.
    Arnault, P.
    Becker, A.
    Benedict, L. X.
    Boehly, T. R.
    Celliers, P. M.
    Ceperley, D. M.
    Certik, O.
    Clerouin, J.
    Collins, G. W.
    Collins, L. A.
    Danel, J. -F.
    Desbiens, N.
    Dharma-wardana, M. W. C.
    Ding, Y. H.
    Fernandez-Panella, A.
    Gregor, M. C.
    Grabowski, P. E.
    Hamel, S.
    Hansen, S. B.
    Harbour, L.
    He, X. T.
    Johnson, D. D.
    Kang, W.
    Karasiev, V. V.
    Kazandjian, L.
    Knudson, M. D.
    Ogitsu, T.
    Pierleoni, C.
    Piron, R.
    Redmer, R.
    Robert, G.
    Saumon, D.
    Shamp, A.
    Sjostrom, T.
    Smirnov, A. V.
    Starrett, C. E.
    Sterne, P. A.
    Wardlow, A.
    Whitley, H. D.
    Wilson, B.
    Zhang, P.
    Zurek, E.
    HIGH ENERGY DENSITY PHYSICS, 2018, 28 : 7 - 24
  • [6] ION BEAM TRAPPING IN PLASMA CHANNELS FOR LIGHT ION INERTIAL CONFINEMENT FUSION.
    Watrous, J.J.
    Olson, R.E.
    Fusion Technology, 1986, 10 (3 pt 2A): : 664 - 673
  • [7] ECONOMIC POTENTIAL OF INERTIAL FUSION.
    Nuckolls, John H.
    Journal of Fusion Energy, 1985, 4 (2-3) : 181 - 186
  • [8] First-principles equation of state of CHON resin for inertial confinement fusion applications
    Zhang, Shuai
    Karasiev, Valentin V.
    Shaffer, Nathaniel
    Mihaylov, Deyan I.
    Nichols, Katarina
    Paul, Reetam
    Goshadze, R. M. N.
    Ghosh, Maitrayee
    Hinz, Joshua
    Epstein, Reuben
    Goedecker, Stefan
    Hu, S. X.
    PHYSICAL REVIEW E, 2022, 106 (04)
  • [9] OVERVIEW OF AURORA: A MULTI-KILOJOULE KrF LASER SYSTEM FOR INERTIAL CONFINEMENT FUSION.
    Rosocha, Louis A.
    Bowling, Pleas S.
    Burrows, Michael D.
    Kang, Michael
    Hanlon, John
    McLeod, John
    York Jr., George W.
    Laser and Particle Beams, 1986, 4 (pt 1) : 55 - 70
  • [10] MATERIALS PROBLEMS WITH INERTIAL CONFINEMENT FUSION-TARGETS
    FARNUM, EH
    FRIES, RJ
    BAREFIELD, JE
    JOURNAL OF NUCLEAR MATERIALS, 1979, 85-6 (DEC) : 99 - 102