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Self-Oscillating Josephson Quantum Heat Engine

Academic Article
Publication Date:
2016
abstract:
The design of a mesoscopic self-oscillating heat engine that works thanks to purely quantum effects is presented. The proposed scheme is amenable to experimental implementation with current state-of-the-art nanotechnology and materials. One of the main features of the structure is its versatility: The engine can deliver work to a generic load without galvanic contact. This versatility makes it a promising building block for low-temperature on-chip energy-management applications. The heat engine consists of a circuit featuring a thermoelectric element based on a ferromagnetic insulator-superconductor tunnel junction and a Josephson weak link that realizes a purely quantum dc-ac converter. This makeup enables the contactless transfer of work to the load (a generic RL circuit). The performance of the heat engine is investigated as a function of the thermal gradient applied to the thermoelectric junction. Power up to 1 pW can be delivered to a load RL=10 ?.
Iris type:
01.01 Articolo in rivista
Keywords:
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List of contributors:
Campisi, Michele; Virtanen, PAULI TAPIO; Giazotto, Francesco
Authors of the University:
CAMPISI MICHELE
GIAZOTTO FRANCESCO
Handle:
https://iris.cnr.it/handle/20.500.14243/332445
Published in:
PHYSICAL REVIEW APPLIED
Journal
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http://www.scopus.com/inward/record.url?eid=2-s2.0-84999143147&partnerID=q2rCbXpz
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