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Bridging Quantum and Semiclassical Thermodynamics in Cavity QED
Marcelo Janovitch1, Sander Stammbach2, Matteo Brunelli3
1University of Basel, Department of Physics and Swiss Nanoscience Institute, Klingelbergstrasse 82, 4056 Basel, Switzerland.
Abstract:
In cavity quantum electrodynamics (QED), photons leaving the cavity can be irreversibly lost or reused as a power source. This dichotomy is reflected in two different thermodynamic bookkeeping methods of the light field, both corresponding to valid thermodynamic frameworks. In this Letter, we formulate a rigorous semiclassical limit of cavity QED and show that the resulting thermodynamic description may qualitatively differ from that of the fully quantized model. We find that violations of the thermodynamic uncertainty relations are recovered in the semiclassical limit only by one of the two thermodynamic frameworks: the one which treats part of the photon flux as a power source. We illustrate our findings in a three-level system coupled to a driven cavity.
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