A stabilisation mechanism for many body localisation in 2D
ORAL
Abstract
Experiments in cold atom systems see identical signatures of many body localisation (MBL) in both one-dimensional (d=1) and two-dimensional (d=2) systems despite the thermal avalanche hypothesis showing that the MBL phase is unstable for d>1. Underpinning the thermal avalanche argument is the assumption of exponential localisation of local integrals of motion (LIOMs), a result taken from the Furstenberg theorem. In this work we show that the Furstenberg theorem assumptions break down for real experimental systems, resulting in super-exponential localisation of LIOMs. A more careful analysis of the quantum avalanche argument for such realistic systems shows that the critical dimension changes from d=1 to d=2, thereby bridging the divide between the experimental demonstrations of MBL in these systems and existing theoretical arguments that claim that such demonstrations are impossible.
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Presenters
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Darryl Foo
Centre for Advanced 2D materials
Authors
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Darryl Foo
Centre for Advanced 2D materials
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Nyayabanta Swain
Natl Univ of Singapore
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Pinaki Sengupta
Nanyang Technological University, NANYANG TECHNOLOGICAL UNIVERSITY
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Gabriel Lemarie
Centre for Quantum Technologies
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Shaffique Adam
Natl Univ of Singapore, National University of Singapore