Time delay of photoemission from valence ns, np3/2, and np1/2 subshells of noble-gas atoms is theoretically scrutinized within the framework of the dipole relativistic random phase approximation. The focus is on the variation of time delay in the vicinity of the Cooper minima in photoionization of the outer subshells of neon, argon, krypton, and xenon, where the corresponding dipole matrix element changes its sign while passing through a node. It is revealed that the presence of the Cooper minimum in one photoionization channel has a strong effect on time delay in other channels. This is shown to be due to interchannel coupling
The angular dependence of Wigner-Eisenbud-Smith photoionization time delay has been investigated for...
© Published under licence by IOP Publishing Ltd. Time delay in quadrupole (E2) channels is studied i...
Spin-orbit-interaction-activated interchannel coupling (SOIAIC) has been investigated theoretically ...
We use the nonrelativistic random-phase approximation with exchange to perform calculations of valen...
Angular dependence of photoemission time delay for the valence np3/2 and np1/2 subshells of Ar, Kr, ...
This research consists of two distinct but related elements in the realm of atomic photoionization. ...
© 2018 American Physical Society. We predict an observable Wigner time delay in outer atomic shell p...
We determine relative photoemission time delays between valence electrons in different noble gas ato...
We perform a systematic investigation of the photoelectron group delay in valence shell single ioniz...
Wigner-Eisenbud-Smith (WES) photoionization time delay is calculated for atomic barium 5s subshell ...
Wigner time delay in photodetachment from the 3p3/2 and 3p1/2 subshells of Cl− has been studied in t...
© 2019 American Physical Society. Using Cl- as a test case, Wigner time delay in the photodetachment...
We analyze the time delay between emission of photoelectrons from the outer valence ns and np subshe...
© 2019 American Physical Society. We uncover dramatic variations of the Wigner photoemission time de...
We conduct a systematic study of the dipole phase and the photoelectron group delay (Wigner time del...
The angular dependence of Wigner-Eisenbud-Smith photoionization time delay has been investigated for...
© Published under licence by IOP Publishing Ltd. Time delay in quadrupole (E2) channels is studied i...
Spin-orbit-interaction-activated interchannel coupling (SOIAIC) has been investigated theoretically ...
We use the nonrelativistic random-phase approximation with exchange to perform calculations of valen...
Angular dependence of photoemission time delay for the valence np3/2 and np1/2 subshells of Ar, Kr, ...
This research consists of two distinct but related elements in the realm of atomic photoionization. ...
© 2018 American Physical Society. We predict an observable Wigner time delay in outer atomic shell p...
We determine relative photoemission time delays between valence electrons in different noble gas ato...
We perform a systematic investigation of the photoelectron group delay in valence shell single ioniz...
Wigner-Eisenbud-Smith (WES) photoionization time delay is calculated for atomic barium 5s subshell ...
Wigner time delay in photodetachment from the 3p3/2 and 3p1/2 subshells of Cl− has been studied in t...
© 2019 American Physical Society. Using Cl- as a test case, Wigner time delay in the photodetachment...
We analyze the time delay between emission of photoelectrons from the outer valence ns and np subshe...
© 2019 American Physical Society. We uncover dramatic variations of the Wigner photoemission time de...
We conduct a systematic study of the dipole phase and the photoelectron group delay (Wigner time del...
The angular dependence of Wigner-Eisenbud-Smith photoionization time delay has been investigated for...
© Published under licence by IOP Publishing Ltd. Time delay in quadrupole (E2) channels is studied i...
Spin-orbit-interaction-activated interchannel coupling (SOIAIC) has been investigated theoretically ...