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Emergent Glassy Behavior in a Kagome Rydberg Atom Array

  • Zheng Yan
  • , Yan Cheng Wang
  • , Rhine Samajdar
  • , Subir Sachdev
  • , Zi Yang Meng
  • HKU-UCAS Joint Institute of Theoretical and Computational Physics
  • Beihang Hangzhou Innovation Institute Yuhang
  • Princeton University
  • Harvard University

科研成果: 期刊稿件文章同行评审

摘要

We present large-scale quantum Monte Carlo simulation results on a realistic Hamiltonian of kagome-lattice Rydberg atom arrays. Although the system has no intrinsic disorder, intriguingly, our analyses of static and dynamic properties on large system sizes reveal emergent glassy behavior in a region of parameter space located between two valence bond solid phases. The extent of this glassy region is demarcated using the Edwards-Anderson order parameter, and its phase transitions to the two proximate valence bond solids - as well as the crossover towards a trivial paramagnetic phase - are identified. We demonstrate the intrinsically slow (imaginary) time dynamics deep inside the glassy phase and discuss experimental considerations for detecting such a quantum disordered phase with numerous nearly degenerate local minima. Our proposal paves a new route to the study of real-time glassy phenomena and highlights the potential for quantum simulation of a distinct phase of quantum matter beyond solids and liquids in current-generation Rydberg platforms.

源语言英语
文章编号206501
期刊Physical Review Letters
130
20
DOI
出版状态已出版 - 19 5月 2023

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