Sumiyoshi Yoshihiro, Endo Yasuki
Department of Basic Science, Graduate School of Arts and Sciences, The University of Tokyo, Komaba, Meguro-ku, Tokyo 153-8902, Japan.
J Chem Phys. 2005 Aug 1;123(5):054325. doi: 10.1063/1.1943968.
All the pure rotational transitions reported in the previous studies [J. Chem. Phys. 113, 10121 (2000); J. Mol. Spectrosc. 222, 22 (2003)] and newly observed rotation-vibration transitions, P = 1/2 <-- 3/2, for Ar-SH and Ar-SD [J. Chem. Phys. (2005), the preceding paper] have been simultaneously analyzed to determine a new intermolecular potential-energy surface of Ar-SH in the ground state. A Schrodinger equation considering the three-dimensional freedom of motion for an atom-diatom complex in the Jacobi coordinate, R, theta, and r, was numerically solved to obtain energies of the rovibrational levels using the discrete variable representation method. A three-dimensional potential-energy surface is determined by a least-squares fitting with initial values of the parameters for the potential obtained by ab initio calculations at the RCCSD(T)/aug-cc-pVTZ level of theory. The potential well reproduces all the observed data in the microwave and millimeter wave regions with parity doublings and hyperfine splittings. Several low-lying rovibrational energies are calculated using the new potential-energy surface. The dependence of the interaction energy between Ar and SH(2pi(i)) on the bond length of the SH monomer is discussed.
之前的研究[《化学物理杂志》113, 10121 (2000); 《分子光谱学杂志》222, 22 (2003)]报道的所有纯转动跃迁以及新观测到的Ar-SH和Ar-SD的转动-振动跃迁P = 1/2 ← 3/2 [《化学物理杂志》(2005), 前文]已被同时分析,以确定基态下Ar-SH的新分子间势能面。在雅可比坐标R、θ和r中考虑原子-双原子复合物三维运动自由度的薛定谔方程,使用离散变量表示法进行数值求解,以获得振转能级的能量。通过在RCCSD(T)/aug-cc-pVTZ理论水平下从头计算得到的势能参数初始值进行最小二乘法拟合,确定三维势能面。该势阱再现了微波和毫米波区域中所有观测到的数据以及奇偶双重分裂和超精细分裂。使用新的势能面计算了几个低振转能量。讨论了Ar与SH(2π(i))之间相互作用能对SH单体键长的依赖性。