The crucial role of diagnostics in achieving ignition on the National Ignition Facility (NIF)

被引:1
|
作者
Kilkenny, J. D. [1 ]
Pak, A. [2 ]
Landen, O. L. [2 ]
Moore, A. S. [2 ]
Meezan, N. B. [2 ]
Haan, S. W. [2 ]
Hsing, W. W. [2 ]
Batha, S. H. [3 ]
Bradley, D. K. [2 ]
Gatu-Johnson, M. [4 ]
Mackinnon, A. J. [2 ]
Regan, S. P. [5 ]
Smalyuk, V. A. [1 ]
机构
[1] Gen Atom, San Diego, CA 92186 USA
[2] Lawrence Livermore Natl Lab, Livermore, CA 94551 USA
[3] Los Alamos Natl Lab, Los Alamos, NM 87545 USA
[4] MIT, Plasma Sci & Fus Ctr, Cambridge, MA 02139 USA
[5] Univ Rochester, Lab Laser Energet, Rochester, NY 14623 USA
关键词
HOT-SPOT MIX; HIGH-VELOCITY; IMPLOSIONS; DENSITY; TARGETS; ASYMMETRIES; DETECTORS; CAMPAIGN;
D O I
10.1063/5.0211684
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
Well over 100 diagnostics can operate on the National Ignition Facility (NIF) as a result of several decades of development on NIF, and before that on Nova, OMEGA, and earlier LLNL lasers. A subset of these have guided the approach to achieving ignition on the NIF in 2022 [H. Abu-Shawareb et al. (Indirect Drive ICF Collaboration), Phys. Rev. Lett. 129(7), 075001 (2022)]. Achieving ignition on NIF has required many types of experiments with this core set of diagnostics, some constraining known unknowns and some revealing surprises-arguably unknown unknowns. Early design work realized that the extreme precision required for ignition on NIF would require fine-tuning by experiment, that is, measuring and adjusting known unknowns. Many examples are given where the use of the core set of ignition diagnostics in experimental arrangements called platforms demonstrated control of the key theoretical parameters defined as shape, adiabat, velocity, and mix. The direction of the adjustments to input conditions is found either by trend analysis or, in many cases, by observing from the diagnostic data the direction to make an adjustment. In addition, diagnostics have revealed some unexpected or neglected known issues, which degrade performance, or unexpected issues, unknown unknowns. Some of these factors had been previously considered, but underestimated or difficult to calculate at the time. The overall methodology can be described as a variant of Popper's falsifiability philosophy [K. Popper, The Logic of Scientific Discovery (Hutchinson, 1974)]. This paper summarizes the role of ignition diagnostics in terms of falsification or validation of theory or experimental setup as well as uncovering unexpected issues. The journey to ignition started in the seventies with a 1-mu m wavelength laser producing disastrous results. Diagnostics have guided us to the recent multi-decadal goal of demonstrating ignition and burn in the laboratory.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] Signal and background considerations for the MRSt on the National Ignition Facility (NIF)
    Wink, C. W.
    Frenje, J. A.
    Hilsabeck, T. J.
    Bionta, R.
    Khater, H. Y.
    Johnson, M. Gatu
    Kilkenny, J. D.
    Li, C. K.
    Seguin, F. H.
    Petrasso, R. D.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2016, 87 (11):
  • [22] The National Ignition Facility and the National Ignition Campaign
    Moses, E. I.
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2010, 38 (04) : 684 - 689
  • [23] The National Ignition Campaign on NIF
    MacGowan, B. J.
    2010 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO) AND QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE (QELS), 2010,
  • [24] Alignment and diagnostics on the National Ignition Facility laser system
    Boyd, RD
    Bliss, ES
    Boege, SJ
    Demaret, RD
    Feldman, M
    Gates, AJ
    Holdener, FR
    Hollis, J
    Knopp, CF
    McCarville, TJ
    Miller-Kamm, VJ
    Rivera, WE
    Salmon, JT
    Severyn, JR
    Thompson, CE
    Wang, DY
    Zacharias, RA
    OPTICAL MANUFACTURING AND TESTING III, 1999, 3782 : 496 - 501
  • [25] Development of nuclear diagnostics for the National Ignition Facility (invited)
    Glebov, V. Yu.
    Meyerhofer, D. D.
    Sangster, T. C.
    Stoeckl, C.
    Roberts, S.
    Barrera, C. A.
    Celeste, J. R.
    Cerjan, C. J.
    Dauffy, L. S.
    Eder, D. C.
    Griffith, R. L.
    Haan, S. W.
    Hammel, B. A.
    Hatchett, S. P.
    Izumi, N.
    Kimbrough, J. R.
    Koch, J. A.
    Landen, O. L.
    Lerche, R. A.
    MacGowan, B. J.
    Moran, M. J.
    Ng, E. W.
    Phillips, T. W.
    Song, P. M.
    Tommasini, R.
    Young, B. K.
    Caldwell, S. E.
    Grim, G. P.
    Evans, S. C.
    Mack, J. M.
    Sedillo, T. J.
    Wilke, M. D.
    Wilson, D. C.
    Young, C. S.
    Casey, D.
    Frenje, J. A.
    Li, C. K.
    Petrasso, R. D.
    Seguin, F. H.
    Bourgade, J. L.
    Disdier, L.
    Houry, M.
    Lantuejoul, I.
    Landoas, O.
    Chandler, G. A.
    Cooper, G. W.
    Leeper, R. J.
    Olson, R. E.
    Ruiz, C. L.
    Sweeney, M. A.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2006, 77 (10):
  • [26] Diagnostics for high density implosions at the National Ignition Facility
    Cable, MD
    Barbee, TW
    Lerche, RA
    Nelson, MB
    Moran, MJ
    Ress, DB
    Sangster, TC
    Trebes, JE
    Turner, RE
    Phillips, TW
    Hicks, D
    Li, CK
    Petrasso, RD
    Seguin, F
    FUSION ENERGY 1996, VOL 3, 1997, : 153 - 159
  • [27] Neutron activation diagnostics at the National Ignition Facility (invited)
    Bleuel, D. L.
    Yeamans, C. B.
    Bernstein, L. A.
    Bionta, R. M.
    Caggiano, J. A.
    Casey, D. T.
    Cooper, G. W.
    Drury, O. B.
    Frenje, J. A.
    Hagmann, C. A.
    Hatarik, R.
    Knauer, J. P.
    Johnson, M. Gatu
    Knittel, K. M.
    Leeper, R. J.
    McNaney, J. M.
    Moran, M.
    Ruiz, C. L.
    Schneider, D. H. G.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2012, 83 (10):
  • [28] PHOTONIC FRONTIERS: THE NATIONAL IGNITION FACILITY NIF is up and running at last
    Hecht, Jeff
    LASER FOCUS WORLD, 2009, 45 (11): : 33 - +
  • [29] Description and performance of the preamplifier for the National Ignition Facility (NIF) laser system
    Crane, JK
    Martinez, M
    Moran, B
    Laumann, C
    Davin, J
    Beach, R
    Golick, B
    Jones, R
    Braucht, J
    Perry, M
    Skulina, K
    Penko, F
    Herman, S
    Burkhart, S
    Mitchell, S
    SECOND ANNUAL INTERNATIONAL CONFERENCE ON SOLID STATE LASERS FOR APPLICATION TO INERTIAL CONFINEMENT FUSION, 1997, 3047 : 601 - 609
  • [30] Overview of the gamma reaction history diagnostic for the National Ignition Facility (NIF)
    Malone, Robert M.
    Ali, Zaheer A.
    Cox, Brian C.
    Evans, Scott C.
    Frogget, Brent C.
    Herrmann, Hans W.
    Kaufman, Morris I.
    Kim, Yong H.
    McGillivray, Kevin D.
    Mack, Joseph M.
    Miller, E. Kirk
    Palagi, Martin J.
    Stoeffl, Wolfgang
    Tibbitts, Aric
    Tunnell, Thomas W.
    Young, Carl S.
    INTERNATIONAL OPTICAL DESIGN CONFERENCE 2010, 2010, 7652