Suppressed-gap millimetre wave kinetic inductance detectors using DC-bias current

Fuente: arXiv
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Auteurs principaux: Zhao, Songyuan, Withington, Stafford, Goldie, David J., Thomas, Chris N.
Format: Preprint
Publié: 2020
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author Zhao, Songyuan
Withington, Stafford
Goldie, David J.
Thomas, Chris N.
author_facet Zhao, Songyuan
Withington, Stafford
Goldie, David J.
Thomas, Chris N.
contents In this study, we evaluate the suitability of using DC-biased aluminium resonators as low-frequency kinetic inductance detectors operating in the frequency range of 50 - 120 GHz. Our analysis routine for supercurrent-biased resonators is based on the Usadel equations and gives outputs including density of states, complex conductivities, transmission line properties, and quasiparticle lifetimes. Results from our analysis confirm previous experimental observations on resonant frequency tuneability and retention of high quality factor. Crucially, our analysis suggests that DC-biased resonators demonstrate significantly suppressed superconducting density of states gap. Consequently these resonators have lower frequency detection threshold and are suitable materials for low-frequency kinetic inductance detectors.
format Preprint
id arxiv_https___arxiv_org_abs_2001_09089
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Suppressed-gap millimetre wave kinetic inductance detectors using DC-bias current
Zhao, Songyuan
Withington, Stafford
Goldie, David J.
Thomas, Chris N.
Instrumentation and Methods for Astrophysics
Applied Physics
In this study, we evaluate the suitability of using DC-biased aluminium resonators as low-frequency kinetic inductance detectors operating in the frequency range of 50 - 120 GHz. Our analysis routine for supercurrent-biased resonators is based on the Usadel equations and gives outputs including density of states, complex conductivities, transmission line properties, and quasiparticle lifetimes. Results from our analysis confirm previous experimental observations on resonant frequency tuneability and retention of high quality factor. Crucially, our analysis suggests that DC-biased resonators demonstrate significantly suppressed superconducting density of states gap. Consequently these resonators have lower frequency detection threshold and are suitable materials for low-frequency kinetic inductance detectors.
title Suppressed-gap millimetre wave kinetic inductance detectors using DC-bias current
topic Instrumentation and Methods for Astrophysics
Applied Physics
url https://arxiv.org/abs/2001.09089