Accès ouvert

Report on 1704.06649v3

Article scientifique 2017 Anglais

Résumé

Quantum integrable models display a rich variety of non-thermal excited states with unusual properties.The most common way to probe them is by performing a quantum quench, i.e., by letting a many-body initial state unitarily evolve with an integrable Hamiltonian.At late times, these systems are locally described by a generalized Gibbs ensemble with as many effective temperatures as their local conserved quantities.The experimental measurement of this macroscopic number of temperatures remains elusive.Here we show that they can be obtained for the Bose gas in one spatial dimension by probing the dynamical structure factor of the system after the quench and by employing a generalized fluctuationdissipation theorem that we provide.Our procedure allows us to completely reconstruct the stationary state of a quantum integrable system from state-ofthe-art experimental observations. Contents 1 Introduction 22 From the dynamic structure factor of the one-dimensional Bose gas to the steady state 5 2.1 The Lieb-Liniger model 5 1

Citer ce document

Nardis, J., Panfil, M., Gambassi, A., Cugliandolo, L., Konik, R., Foini, L. (2017). Report on 1704.06649v3. https://doi.org/10.21468/scipost.report.221

Accès au document

Voir sur le dépôt source

Ce document est hébergé sur son dépôt institutionnel d'origine.

Statistiques

Consultations : 5

Téléchargements : 0