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Ultrahigh magnetic field diagnostic with spectral profile calculation
Authors:Xiang-dong Li  Shen-sheng Han  Cheng Wang  Zhi-zhan Xu
Institution:Laboratory for High Intensity Optics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Science, Shanghai 201800, People's Republic of China
Abstract:We report the theoretical results on use of neon as a tracer element to measure the multi-megagauss magnetic field, which is induced in the ultrahigh intense laser-matter interactions. The shape of Zeeman splitting of spectral line for View the MathML source transition of He-like neon are calculated for high-intensity laser produced quasi one-components plasma with the consideration of the electron collision broadening, electron collision shift and magnetic field splitting. The results show that all of the Zeeman splitting spectrum can be identified under Rayleigh criterion for the plasma with the electron temperature from 10 to View the MathML source, the magnetic field from 106 to View the MathML source and the electron density View the MathML source. With both the electron temperature and magnetic field increasing, the requirement for the resolution power of the spectrometer decreases. If a spectrometer with the resolution power of 1/1000 is used, the measurement of the quasistatic magnetic field by Zeeman splitting of spectral lines is applicable when quasistatic magnetic field is larger than some tens of megaGauss.
Keywords:Spectral profile  Ultrahigh magnetic field  Diagnostic
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