In a composite quantum hypothesis testing scenario with dephasing, the reverse sandwiched Renyi divergence for alpha in (0,1) exactly determines the single-copy Hoeffding exponent.
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Uncertain thermal equilibrium, modeled as a set of candidate states, yields a no-go on athermality purification and strong asymptotic irreversibility for work with clean or dirty batteries.
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Operational interpretation of the reverse sandwiched Renyi divergences in composite quantum hypothesis testing
In a composite quantum hypothesis testing scenario with dephasing, the reverse sandwiched Renyi divergence for alpha in (0,1) exactly determines the single-copy Hoeffding exponent.
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Quantum thermodynamics with uncertain equilibrium
Uncertain thermal equilibrium, modeled as a set of candidate states, yields a no-go on athermality purification and strong asymptotic irreversibility for work with clean or dirty batteries.