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Theoretical study of the HCS<sup>+</sup>–H<sub>2</sub> van der Waals complex: potential energy surface, rovibrational bound states, and rotationally inelastic collisional cross sections

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Taylor & Francis Group2023-11-21 更新2026-04-16 收录
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An accurate ground-state intermolecular potential energy surface (PES) was calculated for the HCS+–H2 complex. The surface was constructed from 3023 <i>ab initio</i> energies, computed with explicitly correlated coupled-cluster theory, CCSD(T)-F12b, with extrapolation to the complete basis set limit (VTZ-F12/VQZ-F12). The new 4D PES was used to compute rovibrational energies, rotational constants, and close-coupling quantum scattering calculations at low collision energies. A symmetry-adapted Lanczos algorithm was used to variationally compute the low-lying rovibrational bound states. Rotational constants for states of two isomers were determined from the energy levels and reported in hopes of motivating experiments. The rotationally inelastic state-to-state cross sections of HCS+ by collision with <i>para</i>- and <i>ortho</i>-H2 were computed and compared, and trends and propensities are discussed.

创建时间:
2021-12-15
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