Ultrafast dynamic Coulomb screening of X-ray core excitons in photoexcited semiconductors
Thomas C. Rossi, Lu Qiao, Conner P. Dykstra, Ronaldo Rodrigues Pela,, Richard Gnewkow, Rachel F. Wallick, John H. Burke, Erin Nicholas, Anne-Marie, March, Gilles Doumy, D. Bruce Buchholz, Christiane Deparis, Jesus, Zu\~niga-P\'erez, Michael Weise, Klaus Ellmer, Mattis Fondell

TL;DR
This study demonstrates ultrafast Coulomb screening of core excitons in photoexcited semiconductors using X-ray transient absorption spectroscopy supported by advanced ab initio theory, revealing nonlinear effects and dominance over Pauli blocking.
Contribution
It provides the first detailed experimental and theoretical analysis of dynamic core-exciton screening in semiconductors on femtosecond timescales.
Findings
Coulomb screening decreases core-exciton binding energy in ZnO.
Screening effect depends nonlinearly on excitation density.
Dynamic core-exciton screening dominates over Pauli blocking.
Abstract
Ultrafast X-ray spectroscopy has been revolutionized in recent years due to the advent of fourth-generation X-ray facilities. In solid-state materials, core excitons determine the energy and line shape of absorption features in core-level spectroscopies such as X-ray absorption spectroscopy. The screening of core excitons is an inherent many-body process that can reveal insight into charge-transfer excitations and electronic correlations. Under non-equilibrium conditions such as after photoexcitation, however, core-exciton screening is still not fully understood. Here we demonstrate the dynamic Coulomb screening of core excitons induced by photoexcited carriers by employing X-ray transient absorption (XTA) spectroscopy with picosecond time resolution. Our interpretation is supported by state-of-the-art ab initio theory, combining constrained and real-time time-dependent density…
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Taxonomy
TopicsElectron and X-Ray Spectroscopy Techniques · Advanced Electron Microscopy Techniques and Applications · X-ray Spectroscopy and Fluorescence Analysis
