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Orbital Fulde-Ferrell State versus Orbital Larkin-Ovchinnikov State
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Orbital Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) states are analyzed within mean-field theory, where orbital FF state is layer-polarized with inversion symmetry broken, while orbital LO state is Josephson vortex array with translation symmetry reduced. Phase diagrams of orbital FFLO states are obtained, and properties such as induced orders, superconducting diode effects, Fraunhofer pattern and topological defects are studied for the probe of FF versus LO states.
Forward citations
Cited by 2 Pith papers
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Orbital FFLO and layer-selective FFLO phases in trilayer NbSe$_2$
Trilayer NbSe2 is predicted to host a layer-selective FFLO superconducting phase in which finite-momentum and zero-momentum Cooper pairs coexist.
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Enhanced Superconducting Diode Effect in the Asymmetric Hatsugai-Kohmoto Model
In an asymmetric-band model with momentum-local repulsion, increasing the interaction from U=0 to U=4 raises the superconducting diode efficiency from 4.6% to 19%.
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