The Quantum Absorption Refrigerator
arXiv:1109.0728 · doi:10.1103/PhysRevLett.108.070604
Abstract
A quantum absorption refrigerator driven by noise is studied with the purpose of determining the limitations of cooling to absolute zero. The model consists of a working medium coupled simultaneously to hot, cold and noise baths. Explicit expressions for the cooling power are obtained for Gaussian and Poisson white noise. The quantum model is consistent with the first and second laws of thermodynamics. The third law is quantified, the cooling power J_c vanishes as J_c proportional to T_c^{alpha}, when T_c approach 0, where alpha =d+1 for dissipation by emission and absorption of quanta described by a linear coupling to a thermal bosonic field, where d is the dimension of the bath.
References in corpus (5)
- The second law, Maxwell's daemon and work derivable from quantum heat engines
- Work extremum principle: Structure and function of quantum heat engines
- Internal Consistency of Fault-Tolerant Quantum Error Correction in Light of Rigorous Derivations of the Quantum Markovian Limit
- The Quantum Refrigerator: The quest for absolute zero
- Quantum thermodynamic processes: A control theory for machine cycles
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