In a previous work, we predicted that a thermally biased tunnel junction between two different superconductors can display a thermoelectric effect of nonlinear nature in the temperature gradient under proper conditions. In this work we give a more extended discussion, and we focus on the two main features of the nonlinear contributions: (i) the linear-in-bias thermoelectricity, which can be associated to a spontaneous breaking of electron-hole symmetry, and (ii) the strong contribution at the matching peak singularity, which is typically associated to the maximum output power and efficiency. We discuss the nonlinear origin of the thermoelectricity and its relationship with the nonlinear cooling mechanism in superconducting junctions previously discussed in the literature. Finally, we design and characterize the performance of the system as a heat engine for a realistic design and experimental parameter values. We discuss possible nonidealities demonstrating that the system is amenable to current experimental realization.

Superconducting nonlinear thermoelectric heat engine

Marchegiani G;Braggio A;Giazotto F
2020

Abstract

In a previous work, we predicted that a thermally biased tunnel junction between two different superconductors can display a thermoelectric effect of nonlinear nature in the temperature gradient under proper conditions. In this work we give a more extended discussion, and we focus on the two main features of the nonlinear contributions: (i) the linear-in-bias thermoelectricity, which can be associated to a spontaneous breaking of electron-hole symmetry, and (ii) the strong contribution at the matching peak singularity, which is typically associated to the maximum output power and efficiency. We discuss the nonlinear origin of the thermoelectricity and its relationship with the nonlinear cooling mechanism in superconducting junctions previously discussed in the literature. Finally, we design and characterize the performance of the system as a heat engine for a realistic design and experimental parameter values. We discuss possible nonidealities demonstrating that the system is amenable to current experimental realization.
2020
Istituto Nanoscienze - NANO
Inglese
101
21
214509
http://www.scopus.com/inward/record.url?eid=2-s2.0-85086990851&partnerID=q2rCbXpz
Esperti anonimi
Phase-coherent caloritronics, Quantum thermodynamics, Thermal Transport, Energy
Internazionale
No
3
info:eu-repo/semantics/article
262
Marchegiani, G; Braggio, A; Giazotto, F
01 Contributo su Rivista::01.01 Articolo in rivista
partially_open
   Thermoelectric detector based on superconductor-ferromagnet heterostructures
   SUPERTED
   European Commission
   Horizon 2020 Framework Programme
   800923

   Bilateral Project CNR-CONICET
   CNR-CONICET

   International Exchanges between the UK and Italy
   Italian Ministry of Foreign Affairs and International Cooperation, and the Royal Society
   IES R3 170054 and IEC R2 192166
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/380246
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