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Thermodynamics of Quantum Feedback Cooling

Authors :
Pietro Liuzzo-Scorpo
Luis A. Correa
Rebecca Schmidt
Gerardo Adesso
Source :
Entropy, Vol 18, Iss 2, p 48 (2016)
Publication Year :
2016
Publisher :
MDPI AG, 2016.

Abstract

The ability to initialize quantum registers in pure states lies at the core of many applications of quantum technologies, from sensing to quantum information processing and computation. In this paper, we tackle the problem of increasing the polarization bias of an ensemble of two-level register spins by means of joint coherent manipulations, involving a second ensemble of ancillary spins and energy dissipation into an external heat bath. We formulate this spin refrigeration protocol, akin to algorithmic cooling, in the general language of quantum feedback control, and identify the relevant thermodynamic variables involved. Our analysis is two-fold: on the one hand, we assess the optimality of the protocol by means of suitable figures of merit, accounting for both its work cost and effectiveness; on the other hand, we characterise the nature of correlations built up between the register and the ancilla. In particular, we observe that neither the amount of classical correlations nor the quantum entanglement seem to be key ingredients fuelling our spin refrigeration protocol. We report instead that a more general indicator of quantumness beyond entanglement, the so-called quantum discord, is closely related to the cooling performance.

Details

Language :
English
ISSN :
10994300
Volume :
18
Issue :
2
Database :
Directory of Open Access Journals
Journal :
Entropy
Publication Type :
Academic Journal
Accession number :
edsdoj.7d95bdaf0a9b452f8acde29156e9e62f
Document Type :
article
Full Text :
https://doi.org/10.3390/e18020048