Core-hole excitation dynamics of one-dimensional ultracold trapped fermions
Becker A, Koutentakis G, Schmelcher P. 2026. Core-hole excitation dynamics of one-dimensional ultracold trapped fermions. Physical Review Research. 8(3), 033346.
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Author
Becker, A.;
Koutentakis, GeorgiosISTA;
Schmelcher, P
Corresponding author has ISTA affiliation
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Abstract
We investigate the nonequilibrium dynamics of core-hole excitations in a one-dimensional fermionic few-body system consisting of a spin-polarized Fermi bath coupled to a single heavy mobile impurity. The bath is initially prepared in a particle-hole configuration by emptying a selected bath single-particle orbital, while the impurity is displaced with respect to the center of the bath confinement potential. The quench dynamics are initialized by suddenly switching on the impurity-bath interaction. To resolve the resulting dynamics, we combine two complementary ab initio approaches, namely, the MultiLayer MultiConfiguration Time-Dependent Hartree method for mixtures and a multichannel Born-Oppenheimer framework. We show that the postquench response is governed by the interaction strength, impurity confinement, mass imbalance, and the location of the initially prepared hole within the Fermi sea. The density evolution and impurity center-of-mass motion reveal a competition between mixing and demixing of impurity and bath, while the von Neumann entropy demonstrates the buildup of pronounced many-body correlations. Most importantly, the occupation dynamics of the initially emptied orbital identifies deep core holes as substantially more robust against refilling than bulk or edge vacancies. Our results establish core-hole excitations as robust dynamical many-body features in trapped ultracold fermions and provide a controlled route toward probing orthogonality response, correlation buildup, and hole refilling in real time.
Publishing Year
Date Published
2026-09-22
Journal Title
Physical Review Research
Publisher
American Physical Society
Acknowledgement
This work has been funded by the Cluster of Excellence “Advanced Imaging of Matter” of the Deutsche Forschungsgemeinschaft (DFG)—EXC 2056—Project No. 390715994. G.M.K. has received funding by the Austrian Science Fund (FWF) [Grant DOI: 10.55776/F1004]. For this work, the HPC-cluster Hummel-2 at University of Hamburg was used. The cluster was funded by Deutsche Forschungsgemeinschaft (DFG, German Research Foundation)—498394658.
Volume
8
Issue
3
Article Number
033346
eISSN
IST-REx-ID
Cite this
Becker A, Koutentakis G, Schmelcher P. Core-hole excitation dynamics of one-dimensional ultracold trapped fermions. Physical Review Research. 2026;8(3). doi:10.1103/njcx-z6np
Becker, A., Koutentakis, G., & Schmelcher, P. (2026). Core-hole excitation dynamics of one-dimensional ultracold trapped fermions. Physical Review Research. American Physical Society. https://doi.org/10.1103/njcx-z6np
Becker, A., Georgios Koutentakis, and P Schmelcher. “Core-Hole Excitation Dynamics of One-Dimensional Ultracold Trapped Fermions.” Physical Review Research. American Physical Society, 2026. https://doi.org/10.1103/njcx-z6np.
A. Becker, G. Koutentakis, and P. Schmelcher, “Core-hole excitation dynamics of one-dimensional ultracold trapped fermions,” Physical Review Research, vol. 8, no. 3. American Physical Society, 2026.
Becker A, Koutentakis G, Schmelcher P. 2026. Core-hole excitation dynamics of one-dimensional ultracold trapped fermions. Physical Review Research. 8(3), 033346.
Becker, A., et al. “Core-Hole Excitation Dynamics of One-Dimensional Ultracold Trapped Fermions.” Physical Review Research, vol. 8, no. 3, 033346, American Physical Society, 2026, doi:10.1103/njcx-z6np.
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