Quantum dynamics studies on the non-adiabatic effects of H + LiD reaction

被引:0
作者
Yuwen Bai
Zijiang Yang
Bayaer Buren
Ye Mao
Maodu Chen
机构
[1] Dalian University of Technology,Key Laboratory of Materials Modification by Laser, Electron, and Ion Beams (Ministry of Education), School of Physics
来源
Frontiers of Physics | 2023年 / 18卷
关键词
non-adiabatic effects; quantum dynamics; time-dependent wave packet; astrophysical reaction;
D O I
暂无
中图分类号
学科分类号
摘要
After the Big Bang, chemical reactions of hydrogen with LiH and its isotopic variants played an important role in the late stage of recombination. Moreover, these reactions have attracted the attention of experts in the field of molecular dynamics because of its simple structure. Electronically non-adiabatic effects play a key role in many chemical reactions, while the related studies in LiH2 reactive system and its isotopic variants are not enough, so the microscopic mechanism of this system has not been fully explored. In this work, the microscopic mechanism of H + LiD reaction are performed by comparing both the adiabatic and non-adiabatic results to study the non-adiabatic effects. The reactivity of R1 (H + LiD → Li + HD) channel is inhibited, while that of R2 (H + LiD → D + LiH) channel is enhanced when the non-adiabatic couplings are considered. For R1 channel, a direct stripping process dominates this channel and the main reaction mechanism is not influenced by the non-adiabatic effects. For R2 channel, at relatively low collision energy, the dominance changes from a rebound process to the complex-forming mechanism when the non-adiabatic effects are considered, whereas the rebound collision approach still dominates the reaction at relatively high collision energy in both calculations. The presented results provide a basis for further detailed study on this importantly astrophysical reaction system.
引用
收藏
相关论文
共 219 条
  • [1] Bodo E(2003)The gasphase lithium chemistry in the early universe: Elementary processes, interaction forces and quantum dynamics Phys. Rep. 384 85-undefined
  • [2] Gianturco F A(2002)Atomic and molecular processes in the early universe J. Phys. At. Mol. Opt. Phys. 35 201-undefined
  • [3] Martinazzo R(2020)Progress of quantum molecular dynamics model and its applications in heavy ion collisions Front. Phys. 15 54301-undefined
  • [4] Lepp S(2012)Quantum dynamics in ultracold atomic physics Front. Phys. 7 16-undefined
  • [5] Stancil P(2013)Dynamics of Bose-Einstein condensates in a one-dimensional optical lattice with double-well potential Front. Phys. 8 375-undefined
  • [6] Dalgarno A(2014)Quantum tunneling of ultracold atoms in optical traps Front. Phys. 9 137-undefined
  • [7] Zhang Y(1984)Molecules in the early universe Astrophys. J. 280 465-undefined
  • [8] Wang N(1998)Classical and quantum dynamics on the collinear potential energy surface for the reaction of Li with H Chem. Phys. 233 9-undefined
  • [9] Li Q(2002)Time-dependent wave packet dynamics of the H + HLi reactive scattering J. Chem. Phys. 117 6469-undefined
  • [10] Ou L(2012)Quantum dynamics of H + LiH reaction and its isotopic variants J. Chem. Phys. 136 174313-undefined