activity
20162024
most citedAnderson localization transitions with and without random potentials

80 citations · 163 across the 5 of their papers we have counts for

collaborators
Showing 2018Show all

9 papers · 1 filter

cond-mat.str-el2018

Classifying local fractal subsystem symmetry protected topological phases

Trithep Devakul

We study symmetry-protected topological (SPT) phases of matter in 2D protected by symmetries acting on fractal subsystems of a certain type. Despite the total symmetry group of suc…

cond-mat.stat-mech2018

An Extension of ETH to Non-Equilibrium Steady States

Sanjay Moudgalya, Trithep Devakul, D. P. Arovas +1

We extend the notion of the Eigenstate Thermalization Hypothesis (ETH) to Open Quantum Systems governed by the Gorini-Kossakowski-Lindblad-Sudarshan (GKLS) Master Equation. We pres…

cond-mat.str-el2018

Higher order symmetry-protected topological states for interacting bosons and fermions

Yizhi You, Trithep Devakul, F. J. Burnell +1

Higher-order topological insulators have a modified bulk-boundary correspondence compared to other topological phases: instead of gapless edge or surface states, they have gapped e…

cond-mat.str-el2018

Classification of subsystem symmetry-protected topological phases

Trithep Devakul, Dominic J. Williamson, Yizhi You

We consider symmetry-protected topological (SPT) phases in 2D protected by linear subsystem symmetries, i.e. those that act along rigid lines. There is a distinction between a "str…

cond-mat.stat-mech2018

Operator Spreading in Quantum Maps

Sanjay Moudgalya, Trithep Devakul, C. W. von Keyserlingk +1

Operators in ergodic spin-chains are found to grow according to hydrodynamical equations of motion. The study of such operator spreading has aided our understanding of many-body qu…

quant-ph2018

Universal quantum computation using fractal symmetry-protected cluster phases

Trithep Devakul, Dominic J. Williamson

We show that 2D fractal subsystem symmetry-protected topological phases may serve as resources for universal measurement-based quantum computation. This is demonstrated explicitly…