Symmetry crossover and excitation thresholds at the neutral-ionic transition of the modified Hubbard model

被引:54
作者
Anusooya-Pati, Y [1 ]
Soos, ZG
Painelli, A
机构
[1] Princeton Univ, Dept Chem, Princeton, NJ 08544 USA
[2] Univ Parma, Dipartimento Chim GIAF, I-43100 Parma, Italy
来源
PHYSICAL REVIEW B | 2001年 / 63卷 / 20期
关键词
D O I
10.1103/PhysRevB.63.205118
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Exact ground stares, charge densities, and excitation energies are found using valence bond methods for N-site modified Hubbard models with uniform spacing. At the neutral-ionic transition (NIT), the ground state has a symmetry crossover in 4n and 4n + 2 rings with periodic and antiperiodic boundary conditions, respectively. Large site energies Delta stabilize a paired state of the half-filled chain, while large U stabilizes a covalent state. Finite-transfer integrals t shift the NIT to the covalent side of U-2 Delta. Exact results to N= 16 in the full basis and to N=22 in a restricted basis for large U and Delta are extrapolated to obtain the crossover and charge density of extended chains. The modified Hubbard model has a continuous NIT between a diamagnetic band insulator on the paired side and a paramagnetic Mott insulator on the covalent side. The singlet-triplet (ST), singlet-singlet (SS), and charge gaps for finite N indicate that the ST and SS gaps close at the NIT with increasing U, and that the charge gap vanishes only there. Finite-N excitations constrain all singularities to +/-0.1t of the symmetry crossover. The NIT is interpreted as a localized ground state (GS) with finite gaps on the paired side and an extended GS with vanishing ST and SS gaps on the covalent side. The charge gap and charge stiffness indicate a metallic GS at the transition that, however, is unconditionally unstable to dimerization. Finite Delta breaks electron-hole (e-h) symmetry, but the modified Hubbard model has an extended e-h symmetry, and a strong mixing of spin and charge excitations is limited to a few t's about the NIT. Exact finite-size results complement other approaches to valence or ferroelectric transitions in organic charge-transfer salts or in inorganic oxides, and to electron-vibration coupling and structural instabilities in one-dimensional systems.
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页数:10
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