Coulomb repulsion versus Hubbard repulsion in a disordered chain
Coulomb repulsion versus Hubbard repulsion in a disordered chain
We study the difference between on site Hubbard and long range Coulomb repulsions for two interacting particles in a disordered chain. While Hubbard repulsion can only yield weak critical chaos with intermediate spectral statistics, Coulomb repulsion can drive the two particle system to quantum chaos with Wigner-Dyson spectral statistics. For intermediate strengths U of the two repulsions in one dimension, there is a crossover regime where delocalization and spectral rigidity are maximum, whereas the limits of weak and strong U are characterized by a stronger localization and uncorrelated energy levels.
Franck Selva、Jean-Louis Pichard
物理学
Franck Selva,Jean-Louis Pichard.Coulomb repulsion versus Hubbard repulsion in a disordered chain[EB/OL].(2000-03-20)[2025-08-16].https://arxiv.org/abs/cond-mat/0003338.点此复制
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