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- W4361281796 abstract "Based on the real-space Mott insulator model, we have found a unifiedpairing, coherent and condensate mechanism of superconductivity forall materials. Partly motivated by Diractextquoteright s magneticmonopole and Maxwelltextquoteright s displacement current hypothesis,we demonstrate that electric and magnetic fields are intrinsicallyrelevant. An isolated proton or electron creates an electric field,whereas a real-space quantized proton-electron pair creates a magneticfield. These findings offer new insights into the nature of electronspin, magnetic monopoles, and the symmetry of Maxwelltextquoteright sequations. We argue that the electric dipole vector of the proton-electronpair plays the role of the Ginzburg-Landau order parameter in thesuperconducting phase transition. It appears that the Peierls transitionof the electron-proton electric dipole lattice leads to the symmetrybreaking of the Mott insulating state and the emergence of superconductingand magnetic states. With this theoretical framework, the Meissnereffect, London penetration depth, magic doping, flux neutralization,vortex lattice, and vortex dynamics, among other superconducting phenomena,can be comprehensively explained." @default.
- W4361281796 created "2023-03-31" @default.
- W4361281796 creator A5034037432 @default.
- W4361281796 date "2023-03-29" @default.
- W4361281796 modified "2023-09-29" @default.
- W4361281796 title "Intrinsic correlation between superconductivity and magnetism" @default.
- W4361281796 doi "https://doi.org/10.31219/osf.io/wr6yz" @default.
- W4361281796 hasPublicationYear "2023" @default.
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