0-π phase-controllable thermal Josephson junction.
Nat Nanotechnol
; 12(5): 425-429, 2017 05.
Article
en En
| MEDLINE
| ID: mdl-28288120
Two superconductors coupled by a weak link support an equilibrium Josephson electrical current that depends on the phase difference Ï between the superconducting condensates. Yet, when a temperature gradient is imposed across the junction, the Josephson effect manifests itself through a coherent component of the heat current that flows opposite to the thermal gradient for |Ï| < π/2 (refs 2-4). The direction of both the Josephson charge and heat currents can be inverted by adding a π shift to Ï. In the static electrical case, this effect has been obtained in a few systems, for example via a ferromagnetic coupling or a non-equilibrium distribution in the weak link. These structures opened new possibilities for superconducting quantum logic and ultralow-power superconducting computers. Here, we report the first experimental realization of a thermal Josephson junction whose phase bias can be controlled from 0 to π. This is obtained thanks to a superconducting quantum interferometer that allows full control of the direction of the coherent energy transfer through the junction. This possibility, in conjunction with the completely superconducting nature of our system, provides temperature modulations with an unprecedented amplitude of â¼100â
mK and transfer coefficients exceeding 1â
K per flux quantum at 25â
mK. Then, this quantum structure represents a fundamental step towards the realization of caloritronic logic components such as thermal transistors, switches and memory devices. These elements, combined with heat interferometers and diodes, would complete the thermal conversion of the most important phase-coherent electronic devices and benefit cryogenic microcircuits requiring energy management, such as quantum computing architectures and radiation sensors.
Texto completo:
1
Colección:
01-internacional
Banco de datos:
MEDLINE
Idioma:
En
Revista:
Nat Nanotechnol
Año:
2017
Tipo del documento:
Article
País de afiliación:
Italia