Phase-controlled superconducting heat-flux quantum modulator
Abstract
We theoretically put forward the concept of a phase-controlled superconducting heat-flux quantum modulator. Its operation relies on phase-dependent heat current predicted to occur in temperature-biased Josephson tunnel junctions. The device behavior is investigated as a function of temperature bias across the junctions, bath temperature, and junctions asymmetry as well. In a realistic Al-based setup the structure could provide temperature modulation amplitudes up to ~50 mK with flux-to-temperature transfer coefficients exceeding ~125 mK/Phi_0 below 1 K, and temperature modulation frequency of the order of a few MHz. The proposed structure appears as a promising building-block for the implementation of novel-concept caloritronic devices operating at cryogenic temperatures.
Cite
@article{arxiv.1205.2973,
title = {Phase-controlled superconducting heat-flux quantum modulator},
author = {F. Giazotto and M. J. Martinez-Perez},
journal= {arXiv preprint arXiv:1205.2973},
year = {2012}
}
Comments
4+ pages, 5 color figures