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Department of Physics and Chemistry
Quantum Dynamics and Information Laboratory
1. Journal Articles
Universal time delays in the inelastic core level photoemission of metals
Bae, Gimin
;
Park, Hyosub
;
Lee, JaeDong
Department of Physics and Chemistry
Quantum Dynamics and Information Laboratory
1. Journal Articles
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Title
Universal time delays in the inelastic core level photoemission of metals
DGIST Authors
Bae, Gimin
;
Park, Hyosub
;
Lee, JaeDong
Issued Date
2021-04
Citation
Bae, Gimin. (2021-04). Universal time delays in the inelastic core level photoemission of metals. doi: 10.1103/PhysRevB.103.165413
Type
Article
Keywords
Core levels
;
Electric fields
;
Plasmons
;
Time delay
;
Core-level photoemission
;
Coulomb potential
;
Emission process
;
Nonperturbative treatment
;
Plasmon coupling
;
Plasmon frequency
;
Theoretical modeling
;
Universal time
;
Photoemission
ISSN
2469-9950
Abstract
Proposing a theoretical model of the core level photoemission of metals, we investigate the plasmon-driven inelastic photoemission delays based on a nonperturbative treatment of many-electron responses due to the long-range Coulomb potential. Being irrelevant to the plasmon coupling strength as well as the plasmon frequency, the emission delays Δτn of the nth-order plasmon satellites (n=1,2,3,...) are found to be universal order by order among the metals in the core level photoemission where the recoil-less approximation would be valid. In particular, for a main line with its weight e-γ, where γ quantifies the plasmon coupling strength, the average inelastic photoemission delay (Δτ) is found to be γ(1-e-γ)-1Δτ1 and thus is simply scaled by a universal time delay Δτ1. This finding is sharply contrasted with the emission delays under the localized potential, which indicates a fundamental difference in the emission process between extended and localized screenings. © 2021 American Physical Society.
URI
http://hdl.handle.net/20.500.11750/15335
DOI
10.1103/PhysRevB.103.165413
Publisher
AMER PHYSICAL SOC
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