The Influence of Thermal Fluctuations on Bosonic Correlations and the AC Stark Effect in Two-Level Atoms: A Superstatistical Perspective

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Main Authors: Castaño-Yepes, Jorge David, Cabrera-Terán, J. M., Ramirez-Gutierrez, Cristian Felipe
Format: Preprint
Published: 2024
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author Castaño-Yepes, Jorge David
Cabrera-Terán, J. M.
Ramirez-Gutierrez, Cristian Felipe
author_facet Castaño-Yepes, Jorge David
Cabrera-Terán, J. M.
Ramirez-Gutierrez, Cristian Felipe
contents We study the influence of thermal fluctuations on the two-time correlation functions of bosonic baths within a superstatistics framework by assuming that fluctuations follow the gamma distribution. We further establish a connection between superstatistics and Tsallis non-additive thermodynamics by introducing a temperature-renormalizing parameter. Our results show that, for an Ohmic model, the system's correlation functions exhibit diverse time-dependent behaviors, with the real and imaginary parts displaying enhancement or suppression depending on temperature and fluctuation strength. Additionally, we analyze the impact of these fluctuations on the quantum master equation of a damped two-level atom coupled to an out-of-equilibrium radiation bath. We demonstrate that while the equation's algebraic structure remains intact, the coupling constants are modified by the fluctuation parameters and cavity volume. Specifically, we observe that the AC Stark effect undergoes significant modifications, with fluctuations influencing the transition between repulsive and attractive energy levels.
format Preprint
id arxiv_https___arxiv_org_abs_2411_12942
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Influence of Thermal Fluctuations on Bosonic Correlations and the AC Stark Effect in Two-Level Atoms: A Superstatistical Perspective
Castaño-Yepes, Jorge David
Cabrera-Terán, J. M.
Ramirez-Gutierrez, Cristian Felipe
Quantum Physics
Statistical Mechanics
Optics
We study the influence of thermal fluctuations on the two-time correlation functions of bosonic baths within a superstatistics framework by assuming that fluctuations follow the gamma distribution. We further establish a connection between superstatistics and Tsallis non-additive thermodynamics by introducing a temperature-renormalizing parameter. Our results show that, for an Ohmic model, the system's correlation functions exhibit diverse time-dependent behaviors, with the real and imaginary parts displaying enhancement or suppression depending on temperature and fluctuation strength. Additionally, we analyze the impact of these fluctuations on the quantum master equation of a damped two-level atom coupled to an out-of-equilibrium radiation bath. We demonstrate that while the equation's algebraic structure remains intact, the coupling constants are modified by the fluctuation parameters and cavity volume. Specifically, we observe that the AC Stark effect undergoes significant modifications, with fluctuations influencing the transition between repulsive and attractive energy levels.
title The Influence of Thermal Fluctuations on Bosonic Correlations and the AC Stark Effect in Two-Level Atoms: A Superstatistical Perspective
topic Quantum Physics
Statistical Mechanics
Optics
url https://arxiv.org/abs/2411.12942