• Acta Photonica Sinica
  • Vol. 40, Issue 8, 1196 (2011)
WANG Hong-jian1、2、*, XIAO Sha-li2, and SHI Jun2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/gzxb20114008.1196 Cite this Article
    WANG Hong-jian, XIAO Sha-li, SHI Jun. Diagnosis of Electron Density by Polarized X-ray Lines for Al Laser-produced Plasmas[J]. Acta Photonica Sinica, 2011, 40(8): 1196 Copy Citation Text show less
    References

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    [2] AGLITSKII E V, BOIKO V A, ZAKHAROV S M, et al. Observation in laser plasmas and identification of dielectron satellites of spectral lines of hydrogen- and helium-like ions of elements in the Na-V range[J]. Soviet Journal of Quantum Electronics, 1974, 4(4): 500-513.

    [3] ILYUKHIN A A, KRAMIDA A E, PEREGUDOV G V, et al. Determination of plasma electron densities from the intensity ratio of resonance and intercombination lines of helium-like ions[J]. Soviet Journal of Quantum Electronics, 1981, 11(1): 34-36.

    [4] KUNZE H J, GABRIEL A, GRIEM H R. Measurement of collisional rate coefficients for heliumlike carbon ions in a plasma[J]. Physical Review, 1968, 165(1): 267-276.

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    [6] AGLITSKII E V, BOIKO V A, KROKHIN O N, et al. Observation of ions of ~30–50 charge in a laser plasma[J]. Soviet Journal of Quantum Electronics, 1975, 4(9): 1152-1153.

    [7] BOIKO V A, KROKHIN O N, PIKUZ S A. Measurement of the intensity of the 2–10  radiation emitted by laser plasmas generated from targets with nuclear charges Z=12–23 and determination of the plasma electron temperature[J]. Soviet Journal of Quantum Electronics, 1975, 4(10): 1212-1215.

    [8] KIEFFER J C, MATTE J P, CHAKER M, et al. X-ray-line polarization spectroscopy in laser- produced plasmas[J]. Review of Scientific Instruments, 1993, 48(6): 4648-4658.

    [9] VINOGRADOV A V, SKOBELEV I Y, YUKOV E A. Determination of plasma density from spectra of heliumlike ions[J]. Soviet Journal of Quantum Electronics, 1975, 5(6): 630-633.

    [10] BELY-DUBAU F, FAUCHER P, STEENMAN-CLARK L, et al. Dielectronic satellite spectra for highly-charged helium-like ions. VII - Calcium spectra: Theory and comparison with SMM observations[J]. Royal Astronomical Society, Monthly Notices, 1982, 201: 1155-1169.

    [11] INAL M K. Linear polarization of the 2p53s→2p6 lines following the inner-shell photoionization of sodiumlike ions[J]. Physical Review A, 2005, 72(4): 2720-2728.

    [12] HENKE B L, GULLIKSON E M, DAVIS J C. X-ray interactions: photoabsorption, scattering, transmission, and reflection at e=50- 30 000 ev, z=1-92 [J]. Atomic Data and Nuclear Data Tables, 1993, 54(2):181-342.

    [13] WANG Hong-jian, XIAO Sha-li, SHI Jun, et al. X-ray polarization spectroscopy for diagnosis of laser-produced plasmas[J]. Acta Optica Sinica, 2009, 29(6): 1710-1713.

    [14] TAKASHI I, MASAHIKO I, Masato K, et al. Performance of a reflection-type polarizer by use of muscovite mica crystal in the soft X-ray region of 1 keV[J]. Rev Sci Instrum, 2005, 76(2): 023104-023107.

    [15] WANG Hong-jian, XIAO Sha-li, SHI Jun, et al. Elliptical crystal spectrometer for gas-puff-pinch plasma X-Ray[J]. Acta Photonica Sinica, 2009, 38(5): 1212-1215.

    [16] FINSHELKOVENKO T A, PIKUZ S A, HAMMER D A. Use of spherically bent crystals to diagnose wire array z pinches[J]. Review of Scientific Instruments, 2004, 75(10): 3681-3683.

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    WANG Hong-jian, XIAO Sha-li, SHI Jun. Diagnosis of Electron Density by Polarized X-ray Lines for Al Laser-produced Plasmas[J]. Acta Photonica Sinica, 2011, 40(8): 1196
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