Spectroscopic Determination of Magnetic Fields in Pulsed-Power and High-Energy-Density Plasmas

被引:2
|
作者
Maron, Y. [1 ]
Doron, R. [1 ]
Cvejic, M. [1 ]
Stambulchik, E. [1 ]
Mikitchuk, D. [1 ]
Stollberg, C. [1 ]
Queller, T. [1 ]
Kroupp, E. [1 ]
Rosenzweig, G. [1 ,2 ]
Rubinstein, B. [1 ]
Biswas, S. [1 ,3 ]
Bernshtam, V. [1 ]
Nedostup, O. [1 ]
Litmanovich, V. [1 ]
Fisher, V. [1 ]
Starobinets, A. [1 ]
Fruchtman, A. [1 ,4 ]
Fisher, A. [1 ]
Tangri, V. [5 ]
Giuliani, J. L. [5 ]
Velikovich, A. L. [5 ]
Dasgupta, A. [5 ]
Ochs, I. E. [6 ]
Kolmes, E. J. [6 ]
Mlodik, M. E. [6 ]
Davidovits, S. [6 ]
Fisch, N. J. [6 ]
Johnston, M. D. [7 ]
机构
[1] Weizmann Inst Sci, Fac Phys, IL-7610001 Rehovot, Israel
[2] MKS Instruments Inc, Wilmington, MA 01887 USA
[3] Inst Adv Study Sci & Technol, Gauhati 781035, Assam, India
[4] Holon Inst Technol, IL-5810201 Holon, Israel
[5] Naval Res Lab, Plasma Phys Div, Washington, DC 20375 USA
[6] Princeton Univ, Dept Astrophys Sci, Princeton, NJ 08540 USA
[7] Sandia Natl Labs, Albuquerque, NM 87185 USA
基金
以色列科学基金会;
关键词
Plasmas; Magnetic field measurement; Magnetic fields; Plasma measurements; Ions; Extraterrestrial measurements; Temperature measurement; Electron and ion Diodes; line-shape analysis; magnetic-field measurements; plasma opening switch (POS); plasma spectroscopy; polarization spectroscopy; pulsed-power systems; Z-pinch; EROSION OPENING SWITCH; Z-PINCH IMPLOSIONS; PUFF Z-PINCH; X-RAY; ION-DYNAMICS; PENETRATION; COMPRESSION; BEHAVIOR; PHYSICS;
D O I
10.1109/TPS.2023.3296561
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
We review spectroscopic methods developed for the determination of magnetic fields in high-energy-density (HED) plasmas. In such plasmas, the common Zeeman-splitting magnetic-field diagnostics are often impeded by various broadening mechanisms of the atomic transitions. The methods described, encompassing atomic transitions in the visible and ultraviolet spectral regions, are applied to the study of imploding plasmas (in a Z-pinch configuration) with and without pre-embedded magnetic fields, relativistic-electron focusing diodes, and plasma-opening switches. The measurements of the magnetic field in side-on observations of cylindrical-plasma configurations that are local in the radial direction despite the light integration along the chordal lines of sight are discussed. The evolution of the magnetic-field distributions obtained, together with the measurements of the plasma temperature and density, allows for studying the plasma dynamics, resistivity, and pressure and energy balance. In particular, for the Z-pinch, an intriguing question on the current flow in the imploding plasma was raised due to the observation that the current during stagnation mainly flows at relatively large radii, outside the stagnation region. For the premagnetized plasma implosions, all three components of the magnetic field (azimuthal, axial, and radial) were measured, yielding the evolution of the current flow and the efficiency of the axial field compression, as well as the relation between the geometry of the field and the plasma rotation, found to develop in this configuration. The measurements in the relativistic electron diode are used to quantify the shielding of the magnetic field by the plasmas in the diode. Also described are the experimental and theoretical investigations of a nondiffusive fast penetration of magnetic field into a low-density plasma (in the plasma-opening-switch configuration).
引用
收藏
页码:3407 / 3425
页数:19
相关论文
共 50 条
  • [31] Conceptual design of a 15-TW pulsed-power accelerator for high-energy-density-physics experiments
    Spielman, R. B.
    Froula, D. H.
    Brent, G.
    Campbell, E. M.
    Reisman, D. B.
    Savage, M. E.
    Shoup, M. J., III
    Stygar, W. A.
    Wisher, M. L.
    MATTER AND RADIATION AT EXTREMES, 2017, 2 (04) : 204 - 223
  • [32] Proton deflectometry with in situ x-ray reference for absolute measurement of electromagnetic fields in high-energy-density plasmas
    Johnson, C. L.
    Malko, S.
    Fox, W.
    Schaeffer, D. B.
    Fiksel, G.
    Adrian, P. J.
    Sutcliffe, G. D.
    Birkel, A.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2022, 93 (02):
  • [33] Measurements of Ion Stopping Around the Bragg Peak in High-Energy-Density Plasmas
    Frenje, J. A.
    Grabowski, P. E.
    Li, C. K.
    Seguin, F. H.
    Zylstra, A. B.
    Johnson, M. Gatu
    Petrasso, R. D.
    Glebov, V. Yu
    Sangster, T. C.
    PHYSICAL REVIEW LETTERS, 2015, 115 (20)
  • [34] Stopping-power enhancement from discrete particle-wake correlations in high-energy-density plasmas
    Ellis, I. N.
    Strozzi, D. J.
    Mori, W. B.
    Li, F.
    Graziani, F. R.
    PHYSICAL REVIEW E, 2021, 104 (03)
  • [35] OPERATION AND TECHNOLOGY OF HIGH PULSED-POWER GENERATORS
    EYL, P
    ROMARY, P
    ONDE ELECTRIQUE, 1995, 75 (03): : 64 - 71
  • [36] A new tri-particle backlighter for high-energy-density plasmas (invited)
    Sutcliffe, Graeme
    Adrian, Patrick
    Pearcy, Jacob
    Johnson, Timothy
    Kabadi, Neel
    Haque, Shaherul
    Parker, Cody
    Lahmann, Brandon
    Frenje, Johan
    Gatu-Johnson, Maria
    Sio, Hong
    Seguin, Fredrick
    Pollock, Brad
    Moody, John
    Glebov, Vladmir
    Janezic, Roger
    Koch, Michael
    Petrasso, Richard
    Li, Chikang
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2021, 92 (06):
  • [37] An experimental platform for pulsed-power driven magnetic reconnection
    Hare, J. D.
    Suttle, L. G.
    Lebedev, S. V.
    Loureiro, N. F.
    Ciardi, A.
    Chittenden, J. P.
    Clayson, T.
    Eardley, S. J.
    Garcia, C.
    Halliday, J. W. D.
    Robinson, T.
    Smith, R. A.
    Stuart, N.
    Suzuki-Vidal, F.
    Tubman, E. R.
    PHYSICS OF PLASMAS, 2018, 25 (05)
  • [38] Zinc provides the power for new high-energy-density battery
    不详
    AMERICAN CERAMIC SOCIETY BULLETIN, 2014, 93 (07): : 16 - 16
  • [39] High-energy-density physics
    Drake, R. Paul
    PHYSICS TODAY, 2010, 63 (06) : 28 - 33
  • [40] Advanced Polymer Electrolytes for High-energy-density Power Sources
    D. Golodnitsky
    E. Livshits
    R. Kovarsky
    E. Peled
    复旦学报(自然科学版), 2005, (05) : 60 - 61