Presentation | 2005/1/20 High-Speed Digital IC Technology Based on Single-Flux-Quantum Circuits : Toward High-End Computing and Quantum Computing Application Nobuyuki YOSHIKAWA, |
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Abstract(in Japanese) | (See Japanese page) |
Abstract(in English) | Single-flux-quantum (SFQ) logic circuits, which utilize a quantized magnetic field in a superconducting loop as logical bit information, have potential ability beyond semiconductor logic circuits in terms of speed, power and sensitivity. Recent rapid progress of the design technology enables us to realize SFQ integrated circuits containing more than several thousands of Josephson junctions. In this report, we will explain the principles and potential ability of SFQ logic circuits, as well as recent development in this field. |
Keyword(in Japanese) | (See Japanese page) |
Keyword(in English) | Single Flux Quantum / Superconductive IC / SFQ Logic Circuit / Josephson Junction / Qubit |
Paper # | ED2004-231,SDM2004-226 |
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Committee | ED |
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Conference Date | 2005/1/20(1days) |
Place (in Japanese) | (See Japanese page) |
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Topics (in Japanese) | (See Japanese page) |
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Paper Information | |
Registration To | Electron Devices (ED) |
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Language | JPN |
Title (in Japanese) | (See Japanese page) |
Sub Title (in Japanese) | (See Japanese page) |
Title (in English) | High-Speed Digital IC Technology Based on Single-Flux-Quantum Circuits : Toward High-End Computing and Quantum Computing Application |
Sub Title (in English) | |
Keyword(1) | Single Flux Quantum |
Keyword(2) | Superconductive IC |
Keyword(3) | SFQ Logic Circuit |
Keyword(4) | Josephson Junction |
Keyword(5) | Qubit |
1st Author's Name | Nobuyuki YOSHIKAWA |
1st Author's Affiliation | Graduate School of Engineering, Yokohama National University() |
Date | 2005/1/20 |
Paper # | ED2004-231,SDM2004-226 |
Volume (vol) | vol.104 |
Number (no) | 622 |
Page | pp.pp.- |
#Pages | 6 |
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