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Observation of Stark many-body localization without disorder.

Publication ,  Journal Article
Morong, W; Liu, F; Becker, P; Collins, KS; Feng, L; Kyprianidis, A; Pagano, G; You, T; Gorshkov, AV; Monroe, C
Published in: Nature
November 2021

Thermalization is a ubiquitous process of statistical physics, in which a physical system reaches an equilibrium state that is defined by a few global properties such as temperature. Even in isolated quantum many-body systems, limited to reversible dynamics, thermalization typically prevails1. However, in these systems, there is another possibility: many-body localization (MBL) can result in preservation of a non-thermal state2,3. While disorder has long been considered an essential ingredient for this phenomenon, recent theoretical work has suggested that a quantum many-body system with a spatially increasing field-but no disorder-can also exhibit MBL4, resulting in 'Stark MBL'5. Here we realize Stark MBL in a trapped-ion quantum simulator and demonstrate its key properties: halting of thermalization and slow propagation of correlations. Tailoring the interactions between ionic spins in an effective field gradient, we directly observe their microscopic equilibration for a variety of initial states, and we apply single-site control to measure correlations between separate regions of the spin chain. Furthermore, by engineering a varying gradient, we create a disorder-free system with coexisting long-lived thermalized and non-thermal regions. The results demonstrate the unexpected generality of MBL, with implications about the fundamental requirements for thermalization and with potential uses in engineering long-lived non-equilibrium quantum matter.

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Published In

Nature

DOI

EISSN

1476-4687

ISSN

0028-0836

Publication Date

November 2021

Volume

599

Issue

7885

Start / End Page

393 / 398

Related Subject Headings

  • General Science & Technology
 

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Morong, W., Liu, F., Becker, P., Collins, K. S., Feng, L., Kyprianidis, A., … Monroe, C. (2021). Observation of Stark many-body localization without disorder. Nature, 599(7885), 393–398. https://doi.org/10.1038/s41586-021-03988-0
Morong, W., F. Liu, P. Becker, K. S. Collins, L. Feng, A. Kyprianidis, G. Pagano, T. You, A. V. Gorshkov, and C. Monroe. “Observation of Stark many-body localization without disorder.Nature 599, no. 7885 (November 2021): 393–98. https://doi.org/10.1038/s41586-021-03988-0.
Morong W, Liu F, Becker P, Collins KS, Feng L, Kyprianidis A, et al. Observation of Stark many-body localization without disorder. Nature. 2021 Nov;599(7885):393–8.
Morong, W., et al. “Observation of Stark many-body localization without disorder.Nature, vol. 599, no. 7885, Nov. 2021, pp. 393–98. Epmc, doi:10.1038/s41586-021-03988-0.
Morong W, Liu F, Becker P, Collins KS, Feng L, Kyprianidis A, Pagano G, You T, Gorshkov AV, Monroe C. Observation of Stark many-body localization without disorder. Nature. 2021 Nov;599(7885):393–398.
Journal cover image

Published In

Nature

DOI

EISSN

1476-4687

ISSN

0028-0836

Publication Date

November 2021

Volume

599

Issue

7885

Start / End Page

393 / 398

Related Subject Headings

  • General Science & Technology