Conductivity rules in the Fermi and charge-spin separated liquid
arXiv:cond-mat/0409227 · doi:10.1016/j.physc.2005.01.011
Abstract
Ioffe-Larkin rule applies for the pure charge-spin separation regardless of its dimensionality. Here, an extension to this rule as a result of the coexistence of spinon, holon and electron as a single entity in the 2-dimensional (2D) system is derived, which is also in accordance with the original rule.
To be published in Physica C
References in corpus (7)
- Singular Fermi Liquids
- Effective gauge field theory of the t-J model in the charge-spin separated state and its transport properties
- An alternative normal state c-axis resistivity model for high-Tc superconductors
- Phenomenological models of dielectric functions and screened Coulomb potential
- Pseudogap and Conduction Dimensionalities in High-T_c Superconductors
- Hall-Lorenz ratio of YBa2Cu3O7 using Ionization energy based Fermi-Dirac statistics and charge-spin separation
- Spin-Charge Separation and Kinetic Energy in the t-J Model