Presentation 2006-07-06
SQUIDs for Multi-chip Modules of Quantum-bits
TOSHIYUKI MIYAZAKI, S. YOROZU, M. MAEZAWA, M. HIDAKA, J. S. TSAI,
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Abstract(in English) Single-flux-quantum (SFQ) logic circuit operates below 1K is a natural candidate for the interface between superconducting quantum-bits and room temperature electronics. We develop a multi-chip module (MCM) system of quantum-bits and SFQ circuit to minimize the interference between modules and to enhance the design flexibility. Although an SFQ circuit consumes very low power (typically below 1mW), its thermal interference can be a significant prblem at very low temperature (below 100mK). In order to estimate the thermal properties of an MCM system, we are developping a Johnson noise thermometry system with dc SQUIDs.
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Keyword(in English) Quantum-bits / Multi-chip module / Johnson noise thermometry / Single-flux-quantum logic circuits
Paper # SCE2006-15
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Committee SCE
Conference Date 2006/6/29(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) SQUIDs for Multi-chip Modules of Quantum-bits
Sub Title (in English)
Keyword(1) Quantum-bits
Keyword(2) Multi-chip module
Keyword(3) Johnson noise thermometry
Keyword(4) Single-flux-quantum logic circuits
1st Author's Name TOSHIYUKI MIYAZAKI
1st Author's Affiliation Japan Science and Technology Agency()
2nd Author's Name S. YOROZU
2nd Author's Affiliation NEC Corp.
3rd Author's Name M. MAEZAWA
3rd Author's Affiliation Advanced Industrial Science and Technology
4th Author's Name M. HIDAKA
4th Author's Affiliation International Supercunductivity Technology Center
5th Author's Name J. S. TSAI
5th Author's Affiliation NEC Corp.
Date 2006-07-06
Paper # SCE2006-15
Volume (vol) vol.106
Number (no) 139
Page pp.pp.-
#Pages 4
Date of Issue