Published August 8, 2022 | Version v2

Data underpinning "Localisation and Sub-Diffusive Transport in Quantum Spin Chains With Dilute Disorder"

Authors/Creators

  • 1. Freie Universität Berlin

Description

It is widely believed that many-body localisation in one dimension is fragile and can be easily destroyed by thermal inclusions, however there are still many open questions regarding the stability of the localised phase and under what conditions it breaks down. Here I construct models with dilute disorder, which interpolate between translationally invariant and fully random models, in order to study the breakdown of localisation. This opens up the possibility to controllably increase the density of thermal regions and examine the breakdown of localisation as this density is increased. At strong disorder, the numerical results are consistent with commonly-used diagnostics for localisation even when the concentration of thermalising regions is high. At moderate disorder, I present evidence for slow dynamics and sub-diffusive transport across a large region of the phase diagram, suggestive of a `bad metal' phase. This suggests that dilute disorder may be a useful effective model for studying Griffiths effects in many-body localisation, and perhaps also in a wider class of disordered systems.

Notes

A README file is available in the .zip archive which explains the subfolders and file structure within. See https://github.com/sjt48/DiluteDisorder for an up-to-date version of the code contained within this dataset, including version history and any bug fixes. Version 2 includes additional data.

Files

dilute_mbl.zip

Files (17.6 GB)

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md5:caf435fd214e680a8edce3f7bb827ac1
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md5:d650e137d669b50f052d03e1ee0dafce
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Additional details

Related works

Is cited by
Preprint: https://arxiv.org/abs/2208.03234 (URL)

Funding

European Commission
EBQM - Ergodicity Breaking in Quantum Matter: From Many-Body Localisation to Quantum Glasses 101031489