Excitons coupled to cavity photons and phonons obey a generalized Bloch theorem based on conserved total crystal momentum that block-diagonalizes the Hamiltonian without approximations.
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Magnetic cavity coupling renders H2 ground states metastable, inverts singlet-triplet gaps, and stabilizes exotic antiaromatic states in rings like H4 and C4H4 by preventing Jahn-Teller distortions.
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Generalized Bloch's Theorem for Cavity Exciton Polaron-Polaritons
Excitons coupled to cavity photons and phonons obey a generalized Bloch theorem based on conserved total crystal momentum that block-diagonalizes the Hamiltonian without approximations.
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Engineering molecular potential energy surfaces using magnetic cavity quantum electrodynamics
Magnetic cavity coupling renders H2 ground states metastable, inverts singlet-triplet gaps, and stabilizes exotic antiaromatic states in rings like H4 and C4H4 by preventing Jahn-Teller distortions.