Two-dimensional motion of an impurity under dynamic light-induced dipole forces in an atomic subwavelength array

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Auteurs principaux: Buckley-Bonanno, Samuel, Ostermann, Stefan, Wang, Yidan, Yelin, Susanne F.
Format: Preprint
Publié: 2024
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author Buckley-Bonanno, Samuel
Ostermann, Stefan
Wang, Yidan
Yelin, Susanne F.
author_facet Buckley-Bonanno, Samuel
Ostermann, Stefan
Wang, Yidan
Yelin, Susanne F.
contents Long-range dipole-dipole interactions in subwavelength arrays of quantum emitters involve virtual photon exchange processes that impart forces on the emitters due to the imposed photon recoil. We perform a semi-classical analysis of the dynamics of an impurity allowed to freely move through a subwavelength array of atoms in different parameter regimes. We numerically solve the coupled set of equations between motional and spin degrees of freedom to elucidate the possible impurity trajectories realizable in this system. We find that the impurity can maintain quasi-stable orbits within the plaquette for long times. The regions through which these orbits pass are strongly dependent on the chosen atomic transition dipole moment. We further provide intuition for our findings based on a simplified model, where the lattice dynamics is adiabatically eliminated. As a final point of analysis, we also take the motional degrees of freedom of the lattice atoms into account, and study the polaron-like excitation induced in the kinetic state of the lattice by the impurity.
format Preprint
id arxiv_https___arxiv_org_abs_2407_11113
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Two-dimensional motion of an impurity under dynamic light-induced dipole forces in an atomic subwavelength array
Buckley-Bonanno, Samuel
Ostermann, Stefan
Wang, Yidan
Yelin, Susanne F.
Quantum Physics
Long-range dipole-dipole interactions in subwavelength arrays of quantum emitters involve virtual photon exchange processes that impart forces on the emitters due to the imposed photon recoil. We perform a semi-classical analysis of the dynamics of an impurity allowed to freely move through a subwavelength array of atoms in different parameter regimes. We numerically solve the coupled set of equations between motional and spin degrees of freedom to elucidate the possible impurity trajectories realizable in this system. We find that the impurity can maintain quasi-stable orbits within the plaquette for long times. The regions through which these orbits pass are strongly dependent on the chosen atomic transition dipole moment. We further provide intuition for our findings based on a simplified model, where the lattice dynamics is adiabatically eliminated. As a final point of analysis, we also take the motional degrees of freedom of the lattice atoms into account, and study the polaron-like excitation induced in the kinetic state of the lattice by the impurity.
title Two-dimensional motion of an impurity under dynamic light-induced dipole forces in an atomic subwavelength array
topic Quantum Physics
url https://arxiv.org/abs/2407.11113