Many-body localization transition in Rokhsar-Kivelson-type wave functions

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We construct a family of many-body wave functions to study the many-body localization phase transition. The wave functions have a Rokhsar-Kivelson form, in which the weight for the configurations are chosen from the Gibbs weights of a classical spin glass model, known as the random energy model, multiplied by a random sign structure to represent a highly excited state. These wave functions show a phase transition into an MBL phase. In addition, we see three regimes of entanglement scaling with the subsystem size: scaling with the entanglement corresponding to an infinite temperature thermal phase, constant scaling, and a subextensive scaling between these limits. Near the phase transition point, the fluctuations of the Renyi entropies are non-Gaussian. We find that Renyi entropies with different Renyi index transition into the MBL phase at different points and have different scaling behavior, suggesting a multifractal behavior.
Publisher
AMER PHYSICAL SOC
Issue Date
2015-12
Language
English
Article Type
Article
Citation

PHYSICAL REVIEW B, v.92, no.21

ISSN
2469-9950
DOI
10.1103/PhysRevB.92.214204
URI
http://hdl.handle.net/10203/205933
Appears in Collection
RIMS Journal Papers
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