arXiv · 1705.07014
Typical Relaxation of Isolated Many-Body Systems Which Do Not Thermalize
Abstract
We consider isolated many-body quantum systems which do not thermalize, i.e., expectation values approach an (approximately) steady longtime limit which disagrees with the microcanonical prediction of equilibrium statistical mechanics. A general analytical theory is worked out for the typical temporal relaxation behavior in such cases. The main prerequisites are initial conditions which appreciably populate many energy levels and do not give rise to significant spatial inhomogeneities on macroscopic scales. The theory explains very well the experimental and numerical findings in a trapped-ion quantum simulator exhibiting many-body localization, in ultracold atomic gases, and in integrable hard-core boson and XXZ models.
Explore related subjects
Keep this discovery
Ben N. Balz, Peter Reimann. 2017-05-19. Typical Relaxation of Isolated Many-Body Systems Which Do Not Thermalize. https://doi.org/10.1103/physrevlett.118.190601
Cite the original work for its findings. Save a collection to share your selection of sources.