Two-dimensional capsule-hohlraum designs for the national ignition facility

被引:16
|
作者
Bradley, PA [1 ]
Wilson, DC [1 ]
机构
[1] Los Alamos Natl Lab, Los Alamos, NM 87545 USA
关键词
D O I
10.1063/1.1385173
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
This article describes 250, 280, and 350 eV drive temperature copper-doped Be [Be(Cu)] two-dimensional (2-D) capsule-hohlraum designs for the National Ignition Facility (NIF) [Paisner , Laser Focus World 30, 75 (1994)]. These capsule-hohlraum designs are a follow-on to the previous one-dimensional capsule designs of Bradley and Wilson [Phys. Plasmas 6, 4293 (1999)]. It is shown that a 2-D 350 eV capsule-hohlraum design scaled from the successful 330 eV design does not ignite, mostly due to poor symmetry. In addition, the 350 eV capsule hohlraum design requires the full 500 TW of the NIF design and 1.66 MJ of the maximum 1.8 MJ designed energy output. It is possible to design a capsule-hohlraum combination that achieves ignition and burn with peak radiation temperatures of 250, 280, and 330 eV. These designs use from 1.3 to 1.6 MJ of laser energy and the successful designs have yields of 16-20 MJ. Changes in symmetry and yield due to changing the focal point of the inner and outer laser cones were examined. The 280 eV capsule can tolerate pointing changes of 40-100 mum before the yield drops by 50%, while even a 40 mum pointing change for the 250 eV capsule causes the yield to drop by a factor of 2 to 100. (C) 2001 American Institute of Physics.
引用
收藏
页码:3724 / 3733
页数:10
相关论文
共 50 条
  • [21] Integrated two-dimensional simulations of dynamic hohlraum driven inertial fusion capsule implosions
    Slutz, S. A.
    Peterson, K. J.
    Vesey, R. A.
    Lemke, R. W.
    Bailey, J. E.
    Varnum, W.
    Ruiz, C. L.
    Cooper, G. W.
    Chandler, G. A.
    Rochau, G. A.
    Mehlhorn, T. A.
    PHYSICS OF PLASMAS, 2006, 13 (10)
  • [22] Machining of Two-Dimensional Sinusoidal Defects on Ignition-Type Capsules to Study Hydrodynamic Instability at the National Ignition Facility
    Giraldez, E. M.
    Hoppe, M. L., Jr.
    Hoover, D. E.
    Nguyen, A. Q. L.
    Rice, N. G.
    Garcia, A. M.
    Huang, H.
    Mauldin, M. P.
    Farrell, M. P.
    Nikroo, A.
    Smalyuk, V.
    FUSION SCIENCE AND TECHNOLOGY, 2016, 70 (02) : 258 - 264
  • [23] Design of a 250 eV cryogenic ignition capsule for the National Ignition Facility
    Strobel, GL
    Haan, SW
    Munro, DH
    Dittrich, TR
    PHYSICS OF PLASMAS, 2004, 11 (09) : 4261 - 4266
  • [24] First beryllium capsule implosions on the National Ignition Facility
    Kline, J. L.
    Yi, S. A.
    Simakov, A. N.
    Olson, R. E.
    Wilson, D. C.
    Kyrala, G. A.
    Perry, T. S.
    Batha, S. H.
    Zylstra, A. B.
    Dewald, E. L.
    Tommasini, R.
    Ralph, J. E.
    Strozzi, D. J.
    MacPhee, A. G.
    Callahan, D. A.
    Hinkel, D. E.
    Hurricane, O. A.
    Milovich, J. L.
    Rygg, J. R.
    Khan, S. F.
    Haan, S. W.
    Celliers, P. M.
    Clark, D. S.
    Hammel, B. A.
    Kozioziemski, B.
    Schneider, M. B.
    Marinak, M. M.
    Rinderknecht, H. G.
    Robey, H. F.
    Salmonson, J. D.
    Patel, P. K.
    Ma, T.
    Edwards, M. J.
    Stadermann, M.
    Baxamusa, S.
    Alford, C.
    Wang, M.
    Nikroo, A.
    Rice, N.
    Hoover, D.
    Youngblood, K. P.
    Xu, H.
    Huang, H.
    Sio, H.
    PHYSICS OF PLASMAS, 2016, 23 (05)
  • [25] Reduced scale National Ignition Facility capsule design
    Dittrich, TR
    Haan, SW
    Marinak, MM
    Pollaine, SM
    McEachern, R
    PHYSICS OF PLASMAS, 1998, 5 (10) : 3708 - 3713
  • [26] Three-wavelength scheme to optimize hohlraum coupling on the National Ignition Facility
    Michel, P.
    Divol, L.
    Town, R. P. J.
    Rosen, M. D.
    Callahan, D. A.
    Meezan, N. B.
    Schneider, M. B.
    Kyrala, G. A.
    Moody, J. D.
    Dewald, E. L.
    Widmann, K.
    Bond, E.
    Kline, J. L.
    Thomas, C. A.
    Dixit, S.
    Williams, E. A.
    Hinkel, D. E.
    Berger, R. L.
    Landen, O. L.
    Edwards, M. J.
    MacGowan, B. J.
    Lindl, J. D.
    Haynam, C.
    Suter, L. J.
    Glenzer, S. H.
    Moses, E.
    PHYSICAL REVIEW E, 2011, 83 (04):
  • [27] First laser-plasma interaction and hohlraum experiments on the National Ignition Facility
    Dewald, EL
    Glenzer, SH
    Landen, OL
    Suter, LJ
    Jones, OS
    Schein, J
    Froula, D
    Divol, L
    Campbell, K
    Schneider, MS
    Holder, J
    McDonald, PW
    Niemann, C
    Mackinnon, AJ
    Hammel, BA
    PLASMA PHYSICS AND CONTROLLED FUSION, 2005, 47 : B405 - B417
  • [28] National Ignition Facility scale hohlraum asymmetry studies by thin shell radiography
    Pollaine, SM
    Bradley, DK
    Landen, OL
    Wallace, RJ
    Jones, OS
    Amendt, PA
    Suter, LJ
    Turner, RE
    PHYSICS OF PLASMAS, 2001, 8 (05) : 2357 - 2364
  • [29] Target designs for energetics experiments on the National Ignition Facility
    Meezan, N. B.
    Glenzer, S. H.
    Suter, L. J.
    5TH INTERNATIONAL CONFERENCE ON INERTIAL FUSION SCIENCES AND APPLICATIONS (IFSA2007), 2008, 112
  • [30] Exploring the limits of case-to-capsule ratio, pulse length, and picket energy for symmetric hohlraum drive on the National Ignition Facility Laser
    Callahan, D. A.
    Hurricane, O. A.
    Ralph, J. E.
    Thomas, C. A.
    Baker, K. L.
    Benedetti, L. R.
    Hopkins, L. F. Berzak
    Casey, D. T.
    Chapman, T.
    Czajka, C. E.
    Dewald, E. L.
    Divol, L.
    Doppner, T.
    Hinkel, D. E.
    Hohenberger, M.
    Jarrott, L. C.
    Khan, S. F.
    Kritcher, A. L.
    Landen, O. L.
    LePape, S.
    MacLaren, S. A.
    Masse, L. P.
    Meezan, N. B.
    Pak, A. E.
    Salmonson, J. D.
    Woods, D. T.
    Izumi, N.
    Ma, T.
    Mariscal, D. A.
    Nagel, S. R.
    Kline, J. L.
    Kyrala, G. A.
    Loomis, E. N.
    Yi, S. A.
    Zylstra, A. B.
    Batha, S. H.
    PHYSICS OF PLASMAS, 2018, 25 (05)