Multifractality without fine-tuning in a Floquet quasiperiodic chain

Periodically driven, or Floquet, disordered quantum systems have generated many unexpected discoveries of late, such as the anomalous Floquet Anderson insulator and the discrete time crystal. Here, we report the emergence of an entire band of multifractal wavefunctions in a periodically driven ch...

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Main Author: Sthitadhi Roy, Ivan M. Khaymovich, Arnab Das, Roderich Moessner
Format: Article
Language:English
Published: SciPost 2018-05-01
Series:SciPost Physics
Online Access:https://scipost.org/SciPostPhys.4.5.025
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spelling doaj-b0cb2cab97a94da28215149724ab989e2020-11-25T00:26:36ZengSciPostSciPost Physics2542-46532018-05-014502510.21468/SciPostPhys.4.5.025Multifractality without fine-tuning in a Floquet quasiperiodic chainSthitadhi Roy, Ivan M. Khaymovich, Arnab Das, Roderich MoessnerPeriodically driven, or Floquet, disordered quantum systems have generated many unexpected discoveries of late, such as the anomalous Floquet Anderson insulator and the discrete time crystal. Here, we report the emergence of an entire band of multifractal wavefunctions in a periodically driven chain of non-interacting particles subject to spatially quasiperiodic disorder. Remarkably, this multifractality is robust in that it does not require any fine-tuning of the model parameters, which sets it apart from the known multifractality of $critical$ wavefunctions. The multifractality arises as the periodic drive hybridises the localised and delocalised sectors of the undriven spectrum. We account for this phenomenon in a simple random matrix based theory. Finally, we discuss dynamical signatures of the multifractal states, which should betray their presence in cold atom experiments. Such a simple yet robust realisation of multifractality could advance this so far elusive phenomenon towards applications, such as the proposed disorder-induced enhancement of a superfluid transition.https://scipost.org/SciPostPhys.4.5.025
collection DOAJ
language English
format Article
sources DOAJ
author Sthitadhi Roy, Ivan M. Khaymovich, Arnab Das, Roderich Moessner
spellingShingle Sthitadhi Roy, Ivan M. Khaymovich, Arnab Das, Roderich Moessner
Multifractality without fine-tuning in a Floquet quasiperiodic chain
SciPost Physics
author_facet Sthitadhi Roy, Ivan M. Khaymovich, Arnab Das, Roderich Moessner
author_sort Sthitadhi Roy, Ivan M. Khaymovich, Arnab Das, Roderich Moessner
title Multifractality without fine-tuning in a Floquet quasiperiodic chain
title_short Multifractality without fine-tuning in a Floquet quasiperiodic chain
title_full Multifractality without fine-tuning in a Floquet quasiperiodic chain
title_fullStr Multifractality without fine-tuning in a Floquet quasiperiodic chain
title_full_unstemmed Multifractality without fine-tuning in a Floquet quasiperiodic chain
title_sort multifractality without fine-tuning in a floquet quasiperiodic chain
publisher SciPost
series SciPost Physics
issn 2542-4653
publishDate 2018-05-01
description Periodically driven, or Floquet, disordered quantum systems have generated many unexpected discoveries of late, such as the anomalous Floquet Anderson insulator and the discrete time crystal. Here, we report the emergence of an entire band of multifractal wavefunctions in a periodically driven chain of non-interacting particles subject to spatially quasiperiodic disorder. Remarkably, this multifractality is robust in that it does not require any fine-tuning of the model parameters, which sets it apart from the known multifractality of $critical$ wavefunctions. The multifractality arises as the periodic drive hybridises the localised and delocalised sectors of the undriven spectrum. We account for this phenomenon in a simple random matrix based theory. Finally, we discuss dynamical signatures of the multifractal states, which should betray their presence in cold atom experiments. Such a simple yet robust realisation of multifractality could advance this so far elusive phenomenon towards applications, such as the proposed disorder-induced enhancement of a superfluid transition.
url https://scipost.org/SciPostPhys.4.5.025
work_keys_str_mv AT sthitadhiroyivanmkhaymovicharnabdasroderichmoessner multifractalitywithoutfinetuninginafloquetquasiperiodicchain
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