Stability of thermally bistable states and their switching in superconducting weak link

Author:

Biswas Sourav12ORCID,Wahi Pankaj3ORCID,Kumar Gupta Anjan1ORCID

Affiliation:

1. Department of Physics, Indian Institute of Technology Kanpur, Kanpur 208016, India

2. Braun Center for Submicron Research, Department of Condensed Matter Physics, Weizmann Institute of Science, Rehovot 7610001, Israel

3. Department of Mechanical Engineering, Indian Institute of Technology Kanpur, Kanpur 208016, India

Abstract

Superconducting weak link (WL), acting as a Josephson junction (JJ), is one of the widely used elements in superconductor science and quantum circuits. A hysteretic JJ with robust switching between its superconducting and resistive state is an excellent candidate for single-photon detection. However, the ubiquitous fluctuations in the junction strongly influence the stability of the states and, thus, the transition from one to the other. Here, we present an experimental study of switching statistics of critical and retrapping currents of a JJ based on niobium WL in its hysteretic regime. The mean lifetimes of the two metastable states, namely, the zero-voltage superconducting state and finite-voltage resistive state, are estimated from the distributions. Further, close to the hysteresis crossover temperature, observed telegraphic noise in the time domain due to random switching between the states provides their lifetimes directly. We present a thermal model introducing a double-well (bistable) feature with an intriguing quantity with respect to the devices’ temperature states. The effects of temperature fluctuations on the stability of the states are shown. We discuss our results toward further improvement of the efficiency of superconducting WL or nanowire single-photon detectors.

Funder

Council of Scientific and Industrial Research, India

Department of Science and Technology, Government of India

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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