TY - JOUR
T1 - High-resolution x-ray spectrum of a laser-produced barium plasma in the 9.10–9.36-Å wavelength range
AU - Doron, R.
AU - Behar, E.
AU - Fraenkel, M.
AU - Mandelbaum, P.
AU - Zigler, A.
AU - Schwob, J. L.
AU - Faenov, A. Ya
AU - Pikuz, T. A.
PY - 1998
Y1 - 1998
N2 - A highly stripped barium plasma is produced by 120-fs laser pulses irradiating a [Formula Presented] target. The spectrum emitted by the plasma in the 9.10–9.36-Å wavelength range is recorded using a high-resolution spherically bent mica crystal. On the basis of the HULLAC atomic code, a level-by-level collisional-radiative model including autoionization and dielectronic capture processes is developed to calculate the wavelengths and intensities of the spectral lines emitted by each of the Cu-, Zn-, and Ga-like barium ions. [Formula Presented] [Formula Presented] spectral lines with different spectator electrons, previously observed only as unresolved transition arrays, are resolved. The theoretical results agree reasonably well with experiment. Best agreement is obtained for electron density and temperature of [Formula Presented] and 120 eV, respectively. The intensity ratios of the resolved Cu-like barium lines are shown to be useful tools for electron density and temperature diagnosis. This diagnostic method was not possible with low-resolution spectroscopy. It is found that at relatively low temperature and high density as in the present experiment, the relative intensities of lines within each ionization state are independent of the ion density ratio of adjacent ionization states.
AB - A highly stripped barium plasma is produced by 120-fs laser pulses irradiating a [Formula Presented] target. The spectrum emitted by the plasma in the 9.10–9.36-Å wavelength range is recorded using a high-resolution spherically bent mica crystal. On the basis of the HULLAC atomic code, a level-by-level collisional-radiative model including autoionization and dielectronic capture processes is developed to calculate the wavelengths and intensities of the spectral lines emitted by each of the Cu-, Zn-, and Ga-like barium ions. [Formula Presented] [Formula Presented] spectral lines with different spectator electrons, previously observed only as unresolved transition arrays, are resolved. The theoretical results agree reasonably well with experiment. Best agreement is obtained for electron density and temperature of [Formula Presented] and 120 eV, respectively. The intensity ratios of the resolved Cu-like barium lines are shown to be useful tools for electron density and temperature diagnosis. This diagnostic method was not possible with low-resolution spectroscopy. It is found that at relatively low temperature and high density as in the present experiment, the relative intensities of lines within each ionization state are independent of the ion density ratio of adjacent ionization states.
UR - http://www.scopus.com/inward/record.url?scp=0001719460&partnerID=8YFLogxK
U2 - 10.1103/PhysRevA.58.1859
DO - 10.1103/PhysRevA.58.1859
M3 - ???researchoutput.researchoutputtypes.contributiontojournal.article???
AN - SCOPUS:0001719460
SN - 1050-2947
VL - 58
SP - 1859
EP - 1866
JO - Physical Review A - Atomic, Molecular, and Optical Physics
JF - Physical Review A - Atomic, Molecular, and Optical Physics
IS - 3
ER -