Geometric phase effects in the ultracold D plus HD→D plus HD and D plus HD ⇆ H+D2 reactions

被引:16
|
作者
Kendrick, B. K. [1 ]
Hazra, Jisha [2 ]
Balakrishnan, N. [2 ]
机构
[1] Los Alamos Natl Lab, Div Theoret, T-1,MS B221, Los Alamos, NM 87545 USA
[2] Univ Nevada, Dept Chem, Las Vegas, NV 89154 USA
来源
NEW JOURNAL OF PHYSICS | 2016年 / 18卷
基金
美国国家科学基金会;
关键词
geometric phase; ultracold molecules; ultracold chemistry; quantum interference; atomic and molecular collisions; STATE TRANSITION-PROBABILITIES; SCATTERING CALCULATIONS; NONADIABATIC COUPLINGS; COLLISION ENERGIES; CHEMICAL-REACTIONS; H+O-2 SCATTERING; ANGULAR-MOMENTUM; H+H-2 REACTION; WAVE-FUNCTIONS; GROUND-STATE;
D O I
10.1088/1367-2630/aa4fd2
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The results of accurate quantum reactive scattering calculations for the D + HD(v = 4, j = 0) -> D + HD (v', j'), D +HD (v = 4, j=0) -> H + D-2 (v', j') and H + D-2 (v = 4, j = 0) -> D + HD (v', j') reactions are presented for collision energies between 1 mu K and 100 K. The ab initio BKMP2 PES for the ground electronic state of H-3 is used and all values of total angular momentum between J = 0 - 4 are included. The general vector potential approach is used to include the geometric phase. The rotationally resolved, vibrationally resolved, and total reaction rate coefficients are reported as a function of collision energy. Rotationally resolved differential cross sections are also reported as a function of collision energy and scattering angle. Large geometric phase effects appear in the ultracold reaction rate coefficients which result in a significant enhancement or suppression of the rate coefficient (up to 3 orders of magnitude) relative to calculations which ignore the geometric phase. The results are interpreted using a new quantum interference mechanism which is unique to ultracold collisions. Significant effects of the geometric phase also appear in the rotationally resolved differential cross sections which lead to a very different oscillatory structure in both energy and scattering angle. Several shape resonances occur in the 1-10 K energy range and the geometric phase is shown to significantly alter the predicted resonance spectrum. The geometric phase effects and ultracold rate coefficients depend sensitively on the nuclear spin. Thus, experimentalists may be able to control the reaction by the selection of a particular nuclear spin state.
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页数:23
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