DMRG simulations show a doublon-holon paired phase with d-wave symmetry emerging between spin-singlet, CDW, and eta-pairing phases in photodoped Mott insulators.
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Tensor-network study of the extended Hubbard model shows an analytical DH-pair formula predicts energy increase rates well but requires exciton energy as effective gap when V induces excitons.
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Doublon-Holon Pairing State in Photodoped Mott Insulators
DMRG simulations show a doublon-holon paired phase with d-wave symmetry emerging between spin-singlet, CDW, and eta-pairing phases in photodoped Mott insulators.
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Charge creation via quantum tunneling in one-dimensional Mott insulators: A numerical study of the extended Hubbard model
Tensor-network study of the extended Hubbard model shows an analytical DH-pair formula predicts energy increase rates well but requires exciton energy as effective gap when V induces excitons.