Direct Mott Insulator-to-Superfluid Transition in the Presence of Disorder
Preprint
- 19 February 1997
Abstract
We introduce a new renormalization group theory to examine the quantum phase transitions upon exiting the insulating phase of a disordered, strongly interacting boson system. For weak disorder we find a direct transition from this Mott insulator to the Superfluid phase. In d > 4 a finite region around the particle-hole symmetric point supports this direct transition, whereas for 2=< d <4 perturbative arguments suggest that the direct transition survives only precisely at commensurate filling. For strong disorder the renormalization trajectories pass next to two fixed points, describing a pair of distinct transitions; first from the Mott insulator to the Bose glass, and then from the Bose glass to the Superfluid. The latter fixed point possesses statistical particle-hole symmetry and a dynamical exponent z, equal to the dimension d.Keywords
All Related Versions
- Version 1, 1997-02-19, ArXiv
- Published version: Physical Review B, 57 (9), 5044.
This publication has 0 references indexed in Scilit: