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Title:
ROOM-TEMPERATURE SUPERCONDUCTING PHASE INSULATOR, AND LEAKAGE CURRENT INTERRUPTER USING STABILITY OF ANTIPARTICLES
Document Type and Number:
WIPO Patent Application WO/2023/058783
Kind Code:
A1
Abstract:
A phase insulator according to the present invention can create spin current using the energy of dipoles composed of particles and antiparticles, and the energy of the phase insulator is composed of the mobility of the particles and the stability of the antiparticles. The particles create the particle velocity of a conductor, and the antiparticles create the stability of the insulator. The stability of the antiparticles varies depending on the spin current of the phase insulator. The spin current includes Majorana fermions, Weyl fermions, Dirac fermions, and neutrinos, of which the Dirac fermions have high stability and mobility and have supercurrent flowing therethrough. Interrupting leakage current using Dirac fermions extends the lifetime while increasing the quantum efficiency of an electronic circuit, and increases the stability thereof. Leakage current is always present when the phase insulator is not used. Majorana fermions, which are antiparticles, have high stability but lack mobility due to quantum fluctuation, and Weyl fermions have mobility but have less stability than Dirac fermions. Dirac fermions, which generate supercurrent, have both high stability and high mobility. Neutrinos, which are particulate neutral current, lack stability and do not have high mobility. The phase insulator may be produced by a method that includes a step of performing heat treatment following deposition, or the phase insulator may include a heat sink when applied to other electronic circuits.

Inventors:
OH TERESA (KR)
Application Number:
PCT/KR2021/013575
Publication Date:
April 13, 2023
Filing Date:
October 05, 2021
Export Citation:
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Assignee:
OH TERESA (KR)
International Classes:
H01L39/06; H01L39/08
Domestic Patent References:
WO2018079950A12018-05-03
Foreign References:
KR20120059064A2012-06-08
KR20170009109A2017-01-25
Other References:
M. Z. HASAN; C. L. KANE: "Topological Insulators", ARXIV.ORG, CORNELL UNIVERSITY LIBRARY, 201 OLIN LIBRARY CORNELL UNIVERSITY ITHACA, NY 14853, 20 February 2010 (2010-02-20), 201 Olin Library Cornell University Ithaca, NY 14853 , XP080392976, DOI: 10.1103/RevModPhys.82.3045
HAN JUNG HOON: "Topological Insulator: A Summary and Perspective", PHYSICS AND HIGH TECHNOLOGY, vol. 20, no. 3, 31 March 2011 (2011-03-31), pages 2, XP093056831, ISSN: 1225-2336, DOI: 10.3938/PhiT.20.006
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