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June 3, 2024Deleted Journal16 citationsOpen Access

Observation of reentrant metal-insulator transition in a random-dimer disordered SSH lattice

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ZXZe-Sheng XuJGJun GaoAIAdrian Iovan

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Abstract

Abstract The interrelationship between localization, quantum transport, and disorder has remained a fascinating focus in scientific research. Traditionally, it has been widely accepted in the physics community that in one-dimensional systems, as disorder increases, localization intensifies, triggering a metal-insulator transition. However, a recent theoretical investigation Phys. Rev. Lett. 126, 106803 has revealed that the interplay between dimerization and disorder leads to a reentrant localization transition, constituting a remarkable theoretical advancement in the field. Here, we present the first experimental observation of reentrant localization using an experimentally friendly model, a photonic SSH lattice with random-dimer disorder, achieved by incrementally adjusting synthetic potentials. In the presence of correlated on-site potentials, certain eigenstates exhibit extended behavior following the localization transition as the disorder continues to increase. We directly probe the wave function in disordered lattices by exciting specific lattice sites and recording the light distribution. This reentrant phenomenon is further verified by observing an anomalous peak in the normalized participation ratio. Our study enriches the understanding of transport in disordered mediums and accentuates the substantial potential of integrated photonics for the simulation of intricate condensed matter physics phenomena.

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Cite This Study

Xu et al. (2024) studied this question.

synapsesocial.com/papers/68e665f2b6db6435875f22a8https://doi.org/10.1038/s44310-024-00008-7
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