Amusia, MY

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Near-threshold photoionization of the Xe 3d spin-orbit doublet: Relativistic, relaxation, and intershell interaction effects

Radojević, Vojislav; Davidović, Dragomir M.; Amusia, MY

(2003)

TY  - JOUR
AU  - Radojević, Vojislav
AU  - Davidović, Dragomir M.
AU  - Amusia, MY
PY  - 2003
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/2613
AB  - Results of calculations of the near-threshold photoionization of the xenon 3d spin-orbit doublet are reported. Our theoretical analysis is undertaken in order to interpret and enlighten the very detailed measurements of this process [A. Kivimaki , Phys. Rev. A 63, 012716 (2001)], which revealed a previously unobserved interesting feature-an additional broad maximum-in the partial xenon 3d(5/2) cross section. This double maximum was not produced by earlier calculations, except in the recent study by Amusia [Phys. Rev. Lett. 88, 093002 (2002)], which, in contrast to the present one, is not ab initio and relativistic in character. The partial photoionization cross sections of 3d(5/2) and 3d(3/2) subshells, photoelectron anisotropy parameters, and spin-polarization parameters that were so far not studied either experimentally or theoretically are calculated. Many-electron correlations, relativistic effects, and relaxation effects of the ionic core in the ionization process are taken into account by using the relativistic random-phase approximation, modified to include the relaxation of the considered subshell.
T2  - Physical Review A
T1  - Near-threshold photoionization of the Xe 3d spin-orbit doublet: Relativistic, relaxation, and intershell interaction effects
VL  - 67
IS  - 2
DO  - 10.1103/PhysRevA.67.022719
ER  - 
@article{
author = "Radojević, Vojislav and Davidović, Dragomir M. and Amusia, MY",
year = "2003",
abstract = "Results of calculations of the near-threshold photoionization of the xenon 3d spin-orbit doublet are reported. Our theoretical analysis is undertaken in order to interpret and enlighten the very detailed measurements of this process [A. Kivimaki , Phys. Rev. A 63, 012716 (2001)], which revealed a previously unobserved interesting feature-an additional broad maximum-in the partial xenon 3d(5/2) cross section. This double maximum was not produced by earlier calculations, except in the recent study by Amusia [Phys. Rev. Lett. 88, 093002 (2002)], which, in contrast to the present one, is not ab initio and relativistic in character. The partial photoionization cross sections of 3d(5/2) and 3d(3/2) subshells, photoelectron anisotropy parameters, and spin-polarization parameters that were so far not studied either experimentally or theoretically are calculated. Many-electron correlations, relativistic effects, and relaxation effects of the ionic core in the ionization process are taken into account by using the relativistic random-phase approximation, modified to include the relaxation of the considered subshell.",
journal = "Physical Review A",
title = "Near-threshold photoionization of the Xe 3d spin-orbit doublet: Relativistic, relaxation, and intershell interaction effects",
volume = "67",
number = "2",
doi = "10.1103/PhysRevA.67.022719"
}
Radojević, V., Davidović, D. M.,& Amusia, M.. (2003). Near-threshold photoionization of the Xe 3d spin-orbit doublet: Relativistic, relaxation, and intershell interaction effects. in Physical Review A, 67(2).
https://doi.org/10.1103/PhysRevA.67.022719
Radojević V, Davidović DM, Amusia M. Near-threshold photoionization of the Xe 3d spin-orbit doublet: Relativistic, relaxation, and intershell interaction effects. in Physical Review A. 2003;67(2).
doi:10.1103/PhysRevA.67.022719 .
Radojević, Vojislav, Davidović, Dragomir M., Amusia, MY, "Near-threshold photoionization of the Xe 3d spin-orbit doublet: Relativistic, relaxation, and intershell interaction effects" in Physical Review A, 67, no. 2 (2003),
https://doi.org/10.1103/PhysRevA.67.022719 . .
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