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Distinguishable-particle glassy crystal: The simplest molecular model of glass

  • Leo S.I. Lam
  • , Gautham Gopinath
  • , Zichen Zhao
  • , Shuling Wang
  • , Chun Shing Lee
  • , Hai Yao Deng
  • , Feng Wang
  • , Yilong Han
  • , Cho Tung Yip*
  • , Chi Hang Lam*
  • *Corresponding author for this work
  • University of Warwick
  • Hong Kong Polytechnic University
  • Yale University
  • North Carolina State University
  • Hebei University of Engineering
  • Harbin Institute of Technology Shenzhen
  • Cardiff University
  • Hong Kong University of Science and Technology

Research output: Contribution to journalArticlepeer-review

Abstract

The nature of glassy dynamics and the glass transition is a long-standing problem under active debate. In the presence of a structural disorder widely believed to be an essential characteristic of structural glass, identifying and understanding key dynamical behaviors are very challenging. In this work, we demonstrate that an energetic disorder, which usually results from a structural disorder, is instead a more essential feature of glass. In particular, we develop a distinguishable-particle glassy crystal, in which particles are ordered in a face-centered cubic lattice and follow particle-dependent random interactions, leading to an energetic disorder in the particle configuration space. Molecular dynamics simulations in the presence of vacancy-induced particle diffusion show typical glassy behaviors. A unique feature of this molecular model is the knowledge of the complete set of inherent structures with easily calculable free energies, implying a well-understood potential energy landscape.

Original languageEnglish
Article number024505
JournalJournal of Chemical Physics
Volume163
Issue number2
DOIs
StatePublished - 14 Jul 2025
Externally publishedYes

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