A hardened gated x-ray imaging diagnostic for inertial confinement fusion experiments at the National Ignition Facility

被引:47
|
作者
Glenn, S. [1 ]
Koch, J. [1 ]
Bradley, D. K. [1 ]
Izumi, N. [1 ]
Bell, P. [1 ]
Holder, J. [1 ]
Stone, G. [1 ]
Prasad, R. [1 ]
MacKinnon, A. [1 ]
Springer, P. [1 ]
Landen, O. L. [1 ]
Kyrala, G. [2 ]
机构
[1] Lawrence Livermore Natl Lab, Livermore, CA 94555 USA
[2] Los Alamos Natl Lab, Los Alamos, NM 87544 USA
来源
REVIEW OF SCIENTIFIC INSTRUMENTS | 2010年 / 81卷 / 10期
关键词
D O I
10.1063/1.3478897
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
A gated x-ray detector is under development for use at the National Ignition Facility that is intended to provide plasma emission images in the presence of neutron yields up to 10(15) expected during inertial confinement fusion experiments with layered cryogenic targets. These images are expected to provide valuable time-resolved measurements of core and fuel symmetries. Additional capabilities of this instrument will include the ability to make spatially resolved electron temperature measurements. A description of this instrument and its operation is given with emphasis on features that differentiate it from previous designs. (C) 2010 American Institute of Physics. [doi:10.1063/1.3478897]
引用
收藏
页数:4
相关论文
共 50 条
  • [31] Shock Ignition: A New Approach to High Gain Inertial Confinement Fusion on the National Ignition Facility
    Perkins, L. J.
    Betti, R.
    LaFortune, K. N.
    Williams, W. H.
    PHYSICAL REVIEW LETTERS, 2009, 103 (04)
  • [32] High-Adiabat High-Foot Inertial Confinement Fusion Implosion Experiments on the National Ignition Facility
    Park, H-S
    Hurricane, O. A.
    Callahan, D. A.
    Casey, D. T.
    Dewald, E. L.
    Dittrich, T. R.
    Doeppner, T.
    Hinkel, D. E.
    Hopkins, L. F. Berzak
    Le Pape, S.
    Ma, T.
    Patel, P. K.
    Remington, B. A.
    Robey, H. F.
    Salmonson, J. D.
    Kline, J. L.
    PHYSICAL REVIEW LETTERS, 2014, 112 (05)
  • [33] Development of a neutron imaging diagnostic for inertial confinement fusion experiments
    Morgan, GL
    Berggren, RR
    Bradley, PA
    Cverna, FH
    Faulkner, JR
    Gobby, PL
    Oertel, JA
    Swenson, FJ
    Tegtmeier, JA
    Walton, RB
    Wilke, MD
    Wilson, DC
    Disdier, L
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2001, 72 (01): : 865 - 868
  • [34] Tungsten doped diamond shells for record neutron yield inertial confinement fusion experiments at the National Ignition Facility
    Braun, T.
    Kucheyev, S. O.
    Shin, S. J.
    Wang, Y. M.
    Ye, J.
    Teslich, N. E., Jr.
    Saw, C. K.
    Bober, D. B.
    Sedillo, E. M.
    Rice, N. G.
    Sequoia, K.
    Huang, H.
    Requieron, W.
    Nikroo, A.
    Ho, D. D.
    Haan, S. W.
    Hamza, A. V.
    Wild, C.
    Biener, J.
    NUCLEAR FUSION, 2023, 63 (01)
  • [35] X-ray source characterization and sample heating on x-ray diffraction experiments at the National Ignition Facility
    Krygier, A.
    Wehrenberg, C. E.
    Bernier, J. V.
    Clarke, S.
    Coleman, A. L.
    Coppari, F.
    Duffy, T. S.
    Gorman, M. G.
    Hohenberger, M.
    Kalantar, D.
    Kemp, G. E.
    Khan, S. F.
    Krauland, C.
    Kraus, R. G.
    Lazicki, A.
    MacDonald, M. J.
    MacPhee, A. G.
    Marley, E.
    Marshall, M. C.
    May, M.
    McNaney, J. M.
    Millot, M.
    Ping, Y.
    Poole, P. L.
    Rygg, J. R.
    Schneider, M.
    Sio, H.
    Stoupin, S.
    Swift, D.
    Yeamans, C.
    Zobrist, T.
    Smith, R. F.
    Eggert, J. H.
    PHYSICS OF PLASMAS, 2022, 29 (10)
  • [36] X-ray diffraction at the National Ignition Facility
    Rygg, J. R.
    Smith, R. F.
    Lazicki, A. E.
    Braun, D. G.
    Fratanduono, D. E.
    Kraus, R. G.
    McNaney, J. M.
    Swift, D. C.
    Wehrenberg, C. E.
    Coppari, F.
    Ahmed, M. F.
    Barrios, M. A.
    Blobaum, K. J. M.
    Collins, G. W.
    Cook, A. L.
    Di Nicola, P.
    Dzenitis, E. G.
    Gonzales, S.
    Heidl, B. F.
    Hohenberger, M.
    House, A.
    Izumi, N.
    Kalantar, D. H.
    Khan, S. F.
    Kohut, T. R.
    Kumar, C.
    Masters, N. D.
    Polsin, D. N.
    Regan, S. P.
    Smith, C. A.
    Vignes, R. M.
    Wall, M. A.
    Ward, J.
    Wark, J. S.
    Zobrist, T. L.
    Arsenlis, A.
    Eggert, J. H.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2020, 91 (04):
  • [37] X-ray conversion efficiency in vacuum hohlraum experiments at the National Ignition Facility
    Olson, R. E.
    Suter, L. J.
    Kline, J. L.
    Callahan, D. A.
    Rosen, M. D.
    Dixit, S. N.
    Landen, O. L.
    Meezan, N. B.
    Moody, J. D.
    Thomas, C. A.
    Warrick, A.
    Widmann, K.
    Williams, E. A.
    Glenzer, S. H.
    PHYSICS OF PLASMAS, 2012, 19 (05)
  • [38] Applications and Results of X-Ray Spectroscopy in Implosion Experiments on the National Ignition Facility
    Epstein, R.
    Regan, S. P.
    Hammel, B. A.
    Suter, L. J.
    Scott, H. A.
    Barrios, M. A.
    Bradley, D. K.
    Callahan, D. A.
    Cerjan, C.
    Collins, G. W.
    Dixit, S. N.
    Doppner, T.
    Edwards, M. J.
    Farley, D. R.
    Fournier, K. B.
    Glenn, S.
    Glenzer, S. H.
    Golovkin, I. E.
    Hamza, A.
    Hicks, D. G.
    Izumi, N.
    Jones, O. S.
    Key, M. H.
    Kilkenny, J. D.
    Kline, J. L.
    Kyrala, G. A.
    Landen, O. L.
    Ma, T.
    MacFarlane, J. J.
    Mackinnon, A. J.
    Mancini, R. C.
    McCrory, R. L.
    Meyerhofer, D. D.
    Meezan, N. B.
    Nikroo, A.
    Park, H. -S.
    Patel, P. K.
    Ralph, J. E.
    Remington, B. A.
    Sangster, T. C.
    Smalyuk, V. A.
    Springer, P. T.
    Town, R. P. J.
    Tucker, J. L.
    ATOMIC PROCESSES IN PLASMAS (APIP 2016), 2017, 1811
  • [39] An improved deconvolution method for X-ray coded imaging in inertial confinement fusion
    Zhao Zong-Qing
    He Wei-Hua
    Wang Jian
    Hao Yi-Dan
    Cao Lei-Feng
    Gu Yu-Qiu
    Zhang Bao-Han
    CHINESE PHYSICS B, 2013, 22 (10)
  • [40] High precision X-ray digital imaging of inertial confinement fusion capsules
    Wang Q.
    Gao D.-Z.
    Ma X.-J.
    Xu C.
    Zhu Y.-N.
    Jiang K.
    Zhang Y.-C.
    Yang S.-D.
    Guangxue Jingmi Gongcheng/Optics and Precision Engineering, 2020, 28 (02): : 324 - 333