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Zhurnal Tekhnicheskoi Fiziki, 2021 Volume 91, Issue 3, Pages 538–541 (Mi jtf5068)

This article is cited in 3 papers

Experimental instruments and technique

Simulation of the heat transfer process of superconducting films in the resistive state

M. A. Vasyutin, N. D. Kuzmichev, D. A. Shilkin

Mordovia State University, Saransk

Abstract: The heat transfer in a contact–film–substrate system was analyzed under conditions in which the heat removal from a sample to the substrate is insufficient to avoid overheating of the sample. A method for increasing the heat removal from thin-film samples is proposed for low temperatures, when a high-density electric current passes through them. The property of an anomalously high thermal conductivity of copper at temperatures from 5 to 50 K is used as the main factor of the heat-sink intensification. The heat-conduction equation for the film–substrate system is solved numerically under the condition of an additional heat transfer to the potential contacts. It is shown that beryllium bronze contacts can provide an effective heat removal from samples of superconducting films in the resistive state under the conditions of a strong Joule heat release.

Keywords: current-voltage characteristics, superconducting films, heat conductivity, beryllium bronze, inhomogeneous heat equation, 3rd boundary-value problem.

Received: 28.05.2020
Revised: 12.09.2020
Accepted: 13.09.2020

DOI: 10.21883/JTF.2021.03.50534.183-20


 English version:
Technical Physics, 2021, 66:3, 524–527

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© Steklov Math. Inst. of RAS, 2024