Breathing-mode amplitude in unitary Fermi gases directly probes energy fluctuations through a symmetry-fixed universal ratio independent of microscopic details and driving protocol.
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In a prethermalizing open quantum system, the End-Point Measurement scheme derives a heat-exchange fluctuation theorem that incorporates initial-state quantum coherence effects on energy exchange statistics, unlike the coherence-blind Two-Point Measurement scheme.
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Breathing Modes as a Probe of Energy Fluctuations in a Unitary Fermi Gas
Breathing-mode amplitude in unitary Fermi gases directly probes energy fluctuations through a symmetry-fixed universal ratio independent of microscopic details and driving protocol.
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Coherent heat exchange in a prethermalizing open quantum system
In a prethermalizing open quantum system, the End-Point Measurement scheme derives a heat-exchange fluctuation theorem that incorporates initial-state quantum coherence effects on energy exchange statistics, unlike the coherence-blind Two-Point Measurement scheme.