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Thermodynamic Bounds on Efficiency for Systems with Broken Time-reversal Symmetry

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arxiv 1102.4735 v2 pith:55TPI7UV submitted 2011-02-23 cond-mat.stat-mech

Thermodynamic Bounds on Efficiency for Systems with Broken Time-reversal Symmetry

classification cond-mat.stat-mech
keywords efficiencyfiguremaximummeritpowerasymmetrybrokencarnot
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We show that for systems with broken time-reversal symmetry the maximum efficiency and the efficiency at maximum power are both determined by two parameters: a "figure of merit" and an asymmetry parameter. In contrast to the time-symmetric case, the figure of merit is bounded from above; nevertheless the Carnot efficiency can be reached at lower and lower values of the figure of merit and far from the so-called strong coupling condition as the asymmetry parameter increases. Moreover, the Curzon-Ahlborn limit for efficiency at maximum power can be overcome within linear response. Finally, always within linear response, it is allowed to have simultaneously Carnot efficiency and non-zero power.

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