Decay of spin-spin correlations in disordered quantum and classical spin chains
arXiv:1911.09917 · doi:10.1103/PhysRevResearch.2.013130
Abstract
The real-time dynamics of equal-site correlation functions is studied for one-dimensional spin models with quenched disorder. Focusing on infinite temperature, we present a comparison between the dynamics of models with different quantum numbers , as well as of chains consisting of classical spins. Based on this comparison as well as by analyzing the statistics of energy-level spacings, we show that the putative many-body localization transition is shifted to considerably stronger values of disorder for increasing . In this context, we introduce an effective disorder strength , which provides a mapping between the dynamics for different spin quantum numbers. For small , we show that the real-time correlations become essentially independent of , and are moreover very well captured by the dynamics of classical spins. Especially for , the agreement between quantum and classical dynamics is remarkably observed even for very strong values of disorder. This behavior also reflects itself in the corresponding spectral functions, which are obtained via a Fourier transform from the time to the frequency domain. As an aside, we also comment on the self-averaging properties of the correlation function at weak and strong disorder. Our work sheds light on the correspondence between quantum and classical dynamics at high temperatures and extends our understanding of the dynamics in disordered spin chains beyond the well-studied case of .
12 pages, 10 figures
References in corpus (16)
- Many body localization and thermalization in quantum statistical mechanics
- Localization of interacting fermions at high temperature
- The Kernel Polynomial Method
- Many-body localization edge in the random-field Heisenberg chain
- Many body localization in Heisenberg XXZ magnet in a random field
- Phenomenology of fully many-body-localized systems
- Anomalous diffusion and Griffiths effects near the many-body localization transition
- Absence of diffusion in an interacting system of spinless fermions on a one-dimensional disordered lattice
- Signatures of Many-Body Localization in a Controlled Open Quantum System
- Typicality for Generalized Microcanonical Ensembles
- Kardar-Parisi-Zhang physics in the quantum Heisenberg magnet
- Anomalous thermalization in ergodic systems
- Many body localization with long range interactions
- Absence of full many-body localization in the disordered Hubbard chain
- Combining Dynamical Quantum Typicality and Numerical Linked Cluster Expansions
- Projection operator approach to spin diffusion in the anisotropic Heisenberg chain at high temperatures