activity
20142020
most citedBulk Geometry of the Many Body Localized Phase from Wilson-Wegner Flow

13 citations · 25 across the 5 of their papers we have counts for

collaborators

5 papers

cond-mat.dis-nn20205 cited

Characterizing the many-body localization transition through correlations

Benjamin Villalonga, Bryan K. Clark

Closed, interacting, quantum systems have the potential to transition to a many-body localized (MBL) phase under the presence of sufficiently strong disorder, hence breaking ergodi…

cond-mat.dis-nn20206 cited

Eigenstates hybridize on all length scales at the many-body localization transition

Benjamin Villalonga, Bryan K. Clark

An interacting quantum system can transition from an ergodic to a many-body localized (MBL) phase under the presence of sufficiently large disorder. Both phases are radically diffe…

hep-lat2020

(1+1)-d U(1) Quantum link models from effective Hamiltonians of dipolar molecules

Jiayu Shen, Di Luo, Michael Highman +4

We study the promising idea of using dipolar molecular systems as analog quantum simulators for quantum link models, which are discrete versions of lattice gauge theories. In a qua…

cond-mat.str-el201913 cited

Bulk Geometry of the Many Body Localized Phase from Wilson-Wegner Flow

Xiongjie Yu, David Pekker, Bryan K. Clark

Tensor networks are a powerful formalism for transforming one set of degrees of freedom to another. They have been heavily used in analyzing the geometry of bulk/boundary correspon…

cond-mat.str-el20141 cited

Stochastically Projecting Tensor Networks

Bryan K. Clark, Hitesh J. Changlani

We apply a series of projection techniques on top of tensor networks to compute energies of ground state wave functions with higher accuracy than tensor networks alone with minimal…