Submillimeter wave signal detection by bicrystal YBCO Josephson junctions at liquid nitrogen temperatures

The submillimeter wave signal detection has been experimentally studied for a high- T c superconducting device, consisting of a bicrystal YBa 2Cu 3O x Josephson junction, incorporated with a log-periodic antenna. Measurements were carried out in wide range of temperatures T=20–80 K. At relatively hi...

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Veröffentlicht in:Physica. C, Superconductivity Superconductivity, 2002-08, Vol.372, p.436-439
Hauptverfasser: Kislinskii, Yu.V., Constantinian, K.Y., Borisenko, I.V., Ovsyannikov, G.A., Yagoubov, P.
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container_start_page 436
container_title Physica. C, Superconductivity
container_volume 372
creator Kislinskii, Yu.V.
Constantinian, K.Y.
Borisenko, I.V.
Ovsyannikov, G.A.
Yagoubov, P.
description The submillimeter wave signal detection has been experimentally studied for a high- T c superconducting device, consisting of a bicrystal YBa 2Cu 3O x Josephson junction, incorporated with a log-periodic antenna. Measurements were carried out in wide range of temperatures T=20–80 K. At relatively high temperatures T>60 K, the thermally activated phase slippage began to predominate. At the same time, a set of clearly resolved detector response functions have been registered up to the temperatures close to the critical one. At the highest temperature T≃80 K, where detector response has been registered, the ratio of the frequency of applied signal f s≃500 GHz to the critical frequency of Josephson junction f c has been estimated as large as f s/ f c≃40.
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subjects Detector
High- Tc superconductor
Josephson effect
Submillimeter waves
title Submillimeter wave signal detection by bicrystal YBCO Josephson junctions at liquid nitrogen temperatures
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