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L-shell spectroscopic diagnostics of radiation from krypton HED plasma sources
Author(s) -
E.E. Petkov,
A.S. Safronova,
V. L. Kantsyrev,
V. V. Shlyaptseva,
Rajdeep Singh Rawat,
K.S. Tan,
P. Beiersdörfer,
N. Hell,
G. V. Brown
Publication year - 2016
Publication title -
review of scientific instruments
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.605
H-Index - 165
eISSN - 1089-7623
pISSN - 0034-6748
DOI - 10.1063/1.4960534
Subject(s) - krypton , electron beam ion trap , plasma , atomic physics , plasma diagnostics , spectrometer , electron temperature , spectroscopy , physics , spectral line , electron , materials science , nuclear physics , xenon , cathode ray , optics , quantum mechanics , astronomy
X-ray spectroscopy is a useful tool for diagnosing plasma sources due to its non-invasive nature. One such source is the dense plasma focus (DPF). Recent interest has developed to demonstrate its potential application as a soft x-ray source. We present the first spectroscopic studies of krypton high energy density plasmas produced on a 3 kJ DPF device in Singapore. In order to diagnose spectral features, and to obtain a more comprehensive understanding of plasma parameters, a new non-local thermodynamic equilibrium L-shell kinetic model for krypton was developed. It has the capability of incorporating hot electrons, with different electron distribution functions, in order to examine the effects that they have on emission spectra. To further substantiate the validity of this model, it is also benchmarked with data gathered from experiments on the electron beam ion trap (EBIT) at Lawrence Livermore National Laboratory, where data were collected using the high resolution EBIT calorimeter spectrometer.

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