Optimized positions of Josephson junctions to prevent trapping of magnetic fluxes in cooling under the static environment

Author:

Tanaka Keiichi,Morooka Toshimitsu,Odawara Akikazu,Chinone Kazuo,Mawatari Yasunori

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference11 articles.

1. A Mo–Cu superconducting transition-edge microcalorimeter with 4.5eV energy resolution at 6keV

2. W.M. Bergmann Tiest, H.F.C. Hoevers, W.A. Mels, M.L. Ridder, M.P. Bruijn, P.A.J. Korte, M E. Huber, in: Proceedings of the 9th International Workshop on Low Temperature Detectors (LTD-9), Madison, USA, 2001

3. Development of scanning SQUID microscope for studying superconducting films and devices

4. Magnetic imaging of moat‐guarded superconducting electronic circuits

5. Micro-imaging system using scanning DC-SQUID microscope

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1. How Moats Protect Superconductor Films From Flux Trapping;IEEE Transactions on Applied Superconductivity;2016-04

2. Operation of Low-$T_{c}$ Circuits in a Magnetic Environment;IEEE Transactions on Applied Superconductivity;2013-06

3. Flux Trapping in Superconducting Circuits;IEEE Transactions on Applied Superconductivity;2007-06

4. Electronic and Excitonic Structures of Inorganic–Organic Perovskite-Type Quantum-Well Crystal (C4H9NH3)2PbBr4;Japanese Journal of Applied Physics;2005-08-05

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