Quantum interference in a mesoscopic superconducting loop
Article Abstract:
Mesoscopic superconducting loops can measure quantum interference without the artificial weak links called Josephson junctions because the interaction between transport currents and shielding in the loop creates real weak links. These links are used to measure quantum interference because a supercurrent is passed through the links by quantum-mechanical tunneling. The mesoscopic links are more sensitive, producing a better quantum interferometer.
Publication Name: Nature
Subject: Zoology and wildlife conservation
ISSN: 0028-0836
Year: 1993
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Organic superconductivity grows in high fields
Article Abstract:
Studies conducted by various physicists have shown that a certain organic salt exhibit a certain degree of superconductivity that is resilient to large magnetic fields. This high-field superconductivity can be attributed to the salt's structure, which is composed of flat, conjugated fulvalene molecules packed in columns along the a-direction. The low-temperature stability of this conductor is known to be influenced by magnetic fields.
Publication Name: Nature
Subject: Zoology and wildlife conservation
ISSN: 0028-0836
Year: 1997
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Superconducting plastic
Article Abstract:
Issues are presented concerning the injection of organic polymers with charge carriers through the use of source and drain electrodes in order to enable them to become superconductors at temperatures of below 2.35 Kelvin.
Publication Name: Nature
Subject: Zoology and wildlife conservation
ISSN: 0028-0836
Year: 2001
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