Enhancing exotic quantum fluctuations in a strongly entangled cavity BEC system

Fuente: arXiv
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Main Authors: Mixa, Leon, Keßler, Hans, Hemmerich, Andreas, Thorwart, Michael
Format: Preprint
Published: 2023
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author Mixa, Leon
Keßler, Hans
Hemmerich, Andreas
Thorwart, Michael
author_facet Mixa, Leon
Keßler, Hans
Hemmerich, Andreas
Thorwart, Michael
contents We show that the strong coupling of a quantum light field and correlated quantum matter induces exotic quantum fluctuations in the matter sector. We determine their spectral characteristics and reveal the impact of the atomic s-wave scattering. In particular, we derive the dissipative Landau and Beliaev processes from the microscopic Hamiltonian using imaginary time path integrals. By this, their strongly sub-Ohmic nature is revealed analytically. A competition between damping and antidamping channels is uncovered. Their intricate influence on physical observables is quantified analytically and the Stokes shift of the critical point is determined. This illustrates the tunability of the quantum matter fluctuations by exploiting strong light-matter coupling.
format Preprint
id arxiv_https___arxiv_org_abs_2311_16687
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Enhancing exotic quantum fluctuations in a strongly entangled cavity BEC system
Mixa, Leon
Keßler, Hans
Hemmerich, Andreas
Thorwart, Michael
Quantum Physics
Quantum Gases
We show that the strong coupling of a quantum light field and correlated quantum matter induces exotic quantum fluctuations in the matter sector. We determine their spectral characteristics and reveal the impact of the atomic s-wave scattering. In particular, we derive the dissipative Landau and Beliaev processes from the microscopic Hamiltonian using imaginary time path integrals. By this, their strongly sub-Ohmic nature is revealed analytically. A competition between damping and antidamping channels is uncovered. Their intricate influence on physical observables is quantified analytically and the Stokes shift of the critical point is determined. This illustrates the tunability of the quantum matter fluctuations by exploiting strong light-matter coupling.
title Enhancing exotic quantum fluctuations in a strongly entangled cavity BEC system
topic Quantum Physics
Quantum Gases
url https://arxiv.org/abs/2311.16687