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Strong bounds on Onsager coefficients and efficiency for three terminal thermoelectric transport in a magnetic field

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arxiv 1301.0492 v1 pith:LZUWJ2WL submitted 2013-01-03 cond-mat.stat-mech cond-mat.mes-hall

Strong bounds on Onsager coefficients and efficiency for three terminal thermoelectric transport in a magnetic field

classification cond-mat.stat-mech cond-mat.mes-hall
keywords efficiencycoefficientsonsagerstrongboundsderivedfieldmagnetic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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For thermoelectric transport in the presence of a magnetic field that breaks time-reversal symmetry, a strong bound on the Onsager coefficients is derived within a general set-up using three terminals. Asymmetric Onsager coefficients lead to a maximum efficiency substantially smaller than the Carnot efficiency reaching only \eta_C/4 in the limit of strong asymmetry. Related bounds are derived for efficiency at maximum power, which can become larger than the Curzon-Ahlborn value \eta_C/2, and for a cooling device. Our approach reveals that in the presence of reversible currents the standard analysis based on the positivity of entropy production is incomplete without considering the role of current conservation explicitly.

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