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Submillimeter-wave response of Nb-YBaCuO point-contact Josephson junctions using YBaCuO thin films prepared by CVD
The Shapiro steps in the submillimeter wave (SMMW) region were measured in point-contact Josephson junctions made of a Nb strip with a sharpened edge and a YBaCuO thin film. The thin film was prepared by the chemical vapor deposition (CVD) method. The dependence of the Shapiro step width on the SMMW...
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Published in: | Japanese Journal of Applied Physics 1990-10, Vol.29 (10), p.L1778-L1780 |
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container_end_page | L1780 |
container_issue | 10 |
container_start_page | L1778 |
container_title | Japanese Journal of Applied Physics |
container_volume | 29 |
creator | IMAI, S SUGAWARA, N SUMIYA, K ITO, K MIKOSHIBA, N YAMANE, H HIRAI, T KUROSAWA, H YAMASHITA, T |
description | The Shapiro steps in the submillimeter wave (SMMW) region were measured in point-contact Josephson junctions made of a Nb strip with a sharpened edge and a YBaCuO thin film. The thin film was prepared by the chemical vapor deposition (CVD) method. The dependence of the Shapiro step width on the SMMW power was measured for the wavelength of 570.6 µm (525.4 GHz). The dependence was similar to that found in microbridges made of low
T
c
superconductors. The first-order Shapiro step was observed for the wavelength of 232.9 µm (1.287 THz). |
doi_str_mv | 10.1143/jjap.29.l1778 |
format | article |
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T
c
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T
c
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T
c
superconductors. The first-order Shapiro step was observed for the wavelength of 232.9 µm (1.287 THz).</abstract><cop>Tokyo</cop><pub>Japanese journal of applied physics</pub><doi>10.1143/jjap.29.l1778</doi><tpages>3</tpages></addata></record> |
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language | eng |
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source | Institute of Physics IOPscience extra; Institute of Physics |
subjects | Condensed matter: electronic structure, electrical, magnetic, and optical properties Exact sciences and technology Physics Superconducting films and low-dimensional structures Superconductivity |
title | Submillimeter-wave response of Nb-YBaCuO point-contact Josephson junctions using YBaCuO thin films prepared by CVD |
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