arXiv · 1911.04452
Collective modes at a disordered quantum phase transition
Abstract
We study the collective excitations, i.e., the Goldstone (phase) mode and the Higgs (amplitude) mode, near the superfluid--Mott glass quantum phase transition in a two-dimensional system of disordered bosons. Using Monte Carlo simulations as well as an inhomogeneous quantum mean-field theory with Gaussian fluctuations, we show that the Higgs mode is strongly localized for all energies, leading to a noncritical scalar response. In contrast, the lowest-energy Goldstone mode undergoes a striking delocalization transition as the system enters the superfluid phase. We discuss the generality of these findings and experimental consequences, and we point out potential relations to many-body localization.
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Martin Puschmann, Jack Crewse, Jose A. Hoyos, Thomas Vojta. 2019-11-11. Collective modes at a disordered quantum phase transition. https://doi.org/10.1103/physrevlett.125.027002
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