Presentation 2003/10/10
Photomixer/High-T_c Josephson Junction Hybrid System
Toshihiko KIWA, Masato SUZUKI, Hironaru MURAKAMI, Masayoshi TONOUCHI,
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Abstract(in English) A new type of hybrid device combined photomixer and high-rc Josephson junction detector has been developed. In such a kind of system, the effective coupling of the electromagnetic waves between the photomixer and the Josephson junction is critical issue. In this paper, we improve frequency properties of the system by introducing, directly, the optical fiber to the cryostat and making the photomixer close to the junction. As the result, the system operation up to 51 GHz was successfully achieved. We also discuss the frequency dependence of the electromagnetic wave coupling by measuring the frequency dependence of the suppression of the critical current of the junction.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Photomixing / Josephson Junction / Microwave / High-7c Superconductor / Photoconductive Device
Paper # SCE2003-24
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Committee SCE
Conference Date 2003/10/10(1days)
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Registration To Superconductive Electronics (SCE)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Photomixer/High-T_c Josephson Junction Hybrid System
Sub Title (in English)
Keyword(1) Photomixing
Keyword(2) Josephson Junction
Keyword(3) Microwave
Keyword(4) High-7c Superconductor
Keyword(5) Photoconductive Device
1st Author's Name Toshihiko KIWA
1st Author's Affiliation Research Center for Superconductor Photonics, Osaka University:CREST, Japan Science and Technology Corporation()
2nd Author's Name Masato SUZUKI
2nd Author's Affiliation Research Center for Superconductor Photonics, Osaka University
3rd Author's Name Hironaru MURAKAMI
3rd Author's Affiliation Research Center for Superconductor Photonics, Osaka University
4th Author's Name Masayoshi TONOUCHI
4th Author's Affiliation Research Center for Superconductor Photonics, Osaka University:CREST, Japan Science and Technology Corporation
Date 2003/10/10
Paper # SCE2003-24
Volume (vol) vol.103
Number (no) 367
Page pp.pp.-
#Pages 6
Date of Issue