activity
20162018
most citedSignatures of Many-Body Localization in a Controlled Open Quantum System

286 citations · 286 across the 1 of their papers we have counts for

collaborators

7 papers

cond-mat.quant-gas2018

Non-Equilibrium Mass Transport in the 1D Fermi-Hubbard Model

S. Scherg, T. Kohlert, J. Herbrych +6

We experimentally and numerically investigate the sudden expansion of fermions in a homogeneous one-dimensional optical lattice. For initial states with an appreciable amount of do…

cond-mat.dis-nn2018

Out-of-time-ordered measurements as a probe of quantum dynamics

Pranjal Bordia, Fabien Alet, Pavan Hosur

Probing the out-of-equilibrium dynamics of quantum matter has gained renewed interest owing to immense experimental progress in artifcial quantum systems. Dynamical quantum measure…

cond-mat.quant-gas2017

Exploring the Single-Particle Mobility Edge in a One-Dimensional Quasiperiodic Optical Lattice

Henrik P. Lüschen, Sebastian Scherg, Thomas Kohlert +5

A single-particle mobility edge (SPME) marks a critical energy separating extended from localized states in a quantum system. In one-dimensional systems with uncorrelated disorder,…

cond-mat.quant-gas2017

Probing Slow Relaxation and Many-Body Localization in Two-Dimensional Quasi-Periodic Systems

Pranjal Bordia, Henrik Lüschen, Sebastian Scherg +4

In a many-body localized (MBL) quantum system, the ergodic hypothesis breaks down completely, giving rise to a fundamentally new many-body phase. Whether and under which conditions…

cond-mat.quant-gas2016

Observation of Slow Dynamics near the Many-Body Localization Transition in One-Dimensional Quasiperiodic Systems

Henrik P. Lüschen, Pranjal Bordia, Sebastian Scherg +4

In the presence of sufficiently strong disorder or quasiperiodic fields, an interacting many-body system can fail to thermalize and become many-body localized. The associated trans…

cond-mat.quant-gas2016★ 286 cited

Signatures of Many-Body Localization in a Controlled Open Quantum System

Henrik P. Lüschen, Pranjal Bordia, Sean S. Hodgman +7

In the presence of disorder, an interacting closed quantum system can undergo many-body localization (MBL) and fail to thermalize. However, over long times even weak couplings to a…