most citedAre many-body localized systems stable in the presence of a small bath?

52 citations · 73 across the 3 of their papers we have counts for

collaborators

9 papers

quant-ph2019

Stationary optomechanical entanglement between a mechanical oscillator and its measurement apparatus

C. Gut, K. Winkler, J. Hoelscher-Obermaier +9

We provide an argument to infer stationary entanglement between light and a mechanical oscillator based on continuous measurement of light only. We propose an experimentally realiz…

cond-mat.dis-nn2019

Floquet engineering topological many-body localized systems

Kevin S. C. Decker, Christoph Karrasch, Jens Eisert +1

We show how second-order Floquet engineering can be employed to realize systems in which many-body localization coexists with topological properties in a driven system. This allows…

quant-ph2019

Harnessing symmetry-protected topological order for quantum memories

Marcel Goihl, Nathan Walk, Jens Eisert +1

Spin chains with symmetry-protected edge modes are promising candidates to realize intrinsically robust physical qubits that can be used for the storage and processing of quantum i…

cond-mat.stat-mech201916 cited

Towards overcoming the entanglement barrier when simulating long-time evolution

C. Krumnow, J. Eisert, Ö. Legeza

Quantum many-body systems out of equilibrium pose some of the most intriguing questions in physics. Unfortunately, numerically keeping track of time evolution of states under Hamil…

quant-ph2019

By-passing fluctuation theorems

Paul Boes, Rodrigo Gallego, Nelly H. Y. Ng +2

Fluctuation theorems impose constraints on possible work extraction probabilities in thermodynamical processes. These constraints are stronger than the usual second law, which is c…

cond-mat.dis-nn201952 cited

Are many-body localized systems stable in the presence of a small bath?

Marcel Goihl, Jens Eisert, Christian Krumnow

When pushed out of equilibrium, generic interacting quantum systems equilibrate locally and are expected to evolve towards a locally thermal description despite their unitary time…