five

Influence of Additional Gaussian Noises on Mixed Quantum-Classical Nonadiabatic Dynamics Simulations of Photoisomerization of cis-Azobenzene

收藏
Figshare2025-08-27 更新2026-04-28 收录
下载链接:
https://figshare.com/articles/dataset/Influence_of_Additional_Gaussian_Noises_on_Mixed_Quantum-Classical_Nonadiabatic_Dynamics_Simulations_of_Photoisomerization_of_i_cis_i_-Azobenzene/29996147
下载链接
链接失效反馈
官方服务:
资源简介:
An efficient potential energy surface from cutting-edge technologies such as quantum computing and deep learning has been incorporated into mixed quantum-classical dynamics. However, the intrinsic noise embedded in those methodologies continues to be the sword of Damocles, as the simulation results of nonadiabatic dynamics are heavily dependent on the numerical stability of potential energy surfaces as well as nonadiabatic couplings. To address this concern, we perform surface hopping and Ehrenfest mean field dynamics simulations on the photoisomerization of cis-azobenzene and investigate the influence of additional noises on the collective results by introducing Gaussian random numbers into on-the-fly electronic structure calculations at each dynamic step. Noises added to nuclear gradients reduce the stability of the dynamic simulations regardless of the method employed. The excited-state lifetime simulated with the original fewest switches surface hopping method is decreased in the presence of Gaussian noise applied to nonadiabatic coupling terms, while the simulation with the branching correction mean field method exhibits the opposite tendency. Finally, we observe that branching correction surface hopping, which combines the robustness of nuclear motion during surface hopping dynamics and the elimination of accumulated perturbations by resetting the electronic density matrix for decoherence correction, is less sensitive to additional noises.
创建时间:
2025-08-27
5,000+
优质数据集
54 个
任务类型
进入经典数据集
二维码
社区交流群

面向社区/商业的数据集话题

二维码
科研交流群

面向高校/科研机构的开源数据集话题

数据驱动未来

携手共赢发展

商业合作