Purely electronic transport and localization in the Bose glass
arXiv:0909.2260 · doi:10.1002/andp.200910393
Abstract
We discuss transport and localization properties on the insulating side of the disorder dominated superconductor-insulator transition, described in terms of the dirty boson model. Analyzing the spectral properties of the interacting bosons in the absence of phonons, we argue that the Bose glass phase admits three distinct regimes. For strongest disorder the boson system is a fully localized, perfect insulator at any temperature. At smaller disorder, only the low temperature phase exhibits perfect insulation while delocalization takes place above a finite temperature. We argue that a third phase must intervene between these perfect insulators and the superconductor. This conducting Bose glass phase is characterized by a mobility edge in the many body spectrum, located at finite energy above the ground state. In this insulating regime purely electronically activated transport occurs, with a conductivity following an Arrhenius law at asymptotically low temperatures, while a tendency to superactivation is predicted at higher T. These predictions are in good agreement with recent transport experiments in highly disordered films of superconducting materials.
Discussion about 2d case added. Proceddings of TIDS 13, to be published in Annals of Physics
References in corpus (7)
- Localization of interacting fermions at high temperature
- Nature of the superconductor-insulator transition in disordered superconductors
- Disorder-Induced Inhomogeneities of the Superconducting State Close to the Superconductor-Insulator Transition
- Eigenfunction fractality and pseudogap state near superconductor-insulator transition
- Localized Superconductivity in the Quantum-Critical Region of the Disorder-Driven Superconductor-Insulator Transition in TiN Thin Films
- Jumps in current-voltage characteristics in disordered films
- Evidence of Spatially Inhomogeous Pairing on the Insulating Side of a Disorder-Tuned Superconductor-Insulator Transition
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- Energy transport in strongly disordered superconductors and magnets
- Level statistics of disordered spin-1/2 systems and its implications for materials with localized Cooper pairs
- Bose glass transition and spin-wave localization for 2D bosons in a random potential
- High field termination of a Cooper-pair insulator
- Absence of many-body localization in a continuum
- Magnetic Field Tuned Quantum Phase Transition in the Insulating Regime of Ultrathin Amorphous Bi Films
- Localization of disordered bosons and magnets in random fields
- Sliding phase in randomly stacked 2D superfluids/superconductors
- Cooper pair islanding model of insulating nanohoneycomb films