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Multistage phase transitions in photoexcited ReS2 monolayer: Real-Time time-dependent density functional theory calculations

  • Liyuan Chen
  • , Li Chen
  • , Hongli Chen
  • , Liyan Shang
  • , Yawei Li
  • , Liangqing Zhu
  • , Shijing Gong
  • , Zhigao Hu*
  • *此作品的通讯作者
  • East China Normal University
  • Shanxi University

科研成果: 期刊稿件文章同行评审

摘要

Photoinduced phase transitions (PIPTs) allow complex interactions to be distinguished within the constraints of atomic motion. Here, using real-Time time-dependent density functional theory (rt-TDDFT) simulations combined with occupation-constrained density functional theory (DFT) methods, we reveal the ultrafast dynamics of ReS2 monolayer driven by photoexcitation at varying levels of electronic occupancy. The results show that the phase transition from diamond-shaped to zigzag-shaped to quasi-diamond-shaped (DS-ZS-DS′) is effectively induced by 4% excitation manually, resulting in the formation of new quasidiamond chains along the direction of the original diamond chains rotated by π/3. Notably, under pulse excitation, the entire dynamic process also includes subsequent recovery, during which the quasidiamond chains rotate back to their original direction. The phase transition is mediated by the atomic force caused by photoexcited electrons occupying the antibonding state of the Re-Re bonds between the Re4 diamonds, accompanied by the modulation of the potential energy surface. The thermal phonon vibration can effectively reduce the optical excitation fluency required to drive the bond dissociation and rearrangement. These findings provide an important guiding significance for nonequilibrium phase regulation.

源语言英语
文章编号024111
期刊Physical Review B
111
2
DOI
出版状态已出版 - 1 1月 2025
已对外发布

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