Non-local interactions induce quantum-geometry-driven spin loop currents that lift degeneracies and open a full gap, realizing a topological Kondo insulator in MoTe2/WSe2 at ν=2.
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Nonlinear thermal and thermoelectric responses are shown to encode quantum geometry and satisfy relations parallel to the Wiedemann-Franz and Mott laws in systems with broken symmetries.
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Topological Kondo Insulator from Spin Loop Currents
Non-local interactions induce quantum-geometry-driven spin loop currents that lift degeneracies and open a full gap, realizing a topological Kondo insulator in MoTe2/WSe2 at ν=2.
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Nonlinear thermal and thermoelectric transport from quantum geometry
Nonlinear thermal and thermoelectric responses are shown to encode quantum geometry and satisfy relations parallel to the Wiedemann-Franz and Mott laws in systems with broken symmetries.