Sarma Gautam, Saha Ashim Kumar, Bishwakarma Chandan Kumar, Scheidsbach Roy, Yang Chung-Hsin, Parker David, Wiesenfeld Laurent, Buck Udo, Mavridis Lazaros, Marinakis Sarantos
Radboud University Nijmegen, Institute for Molecules and Materials, Nijmegen, The Netherlands.
Radboud University Nijmegen, Institute for Molecules and Materials, Nijmegen, The Netherlands and Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei, Taiwan.
Phys Chem Chem Phys. 2017 Feb 8;19(6):4678-4687. doi: 10.1039/c6cp06495g.
The inelastic scattering of HO by He as a function of collision energy in the range 381 cm to 763 cm at an energy interval of approximately 100 cm has been investigated in a crossed beam experiment using velocity map imaging. Change in collision energy was achieved by varying the collision angle between the HO and He beam. We measured the state-to-state differential cross section (DCS) of scattered HO products for the final rotational states J = 1, 1, 2 and 4. Rotational excitation of HO is probed by (2 + 1) resonance enhanced multiphoton ionization (REMPI) spectroscopy. DCS measurements over a wide range of collision energies allowed us to probe the HO-He potential energy surface (PES) with greater detail than in previous work. We found that a classical approximation of rotational rainbows can predict the collision energy dependence of the DCS. Close-coupling quantum mechanical calculations were used to produce DCS and partial cross sections. The forward-backward ratio (FBR), is introduced here to compare the experimental and theoretical DCS. Both theory and experiments suggest that an increase in the collision energy is accompanied with more forward scattering.
在交叉束实验中,利用速度成像技术研究了HO与He的非弹性散射,其作为碰撞能量的函数,碰撞能量范围在381cm⁻¹至763cm⁻¹之间,能量间隔约为100cm⁻¹。通过改变HO束与He束之间的碰撞角度来实现碰撞能量的变化。我们测量了散射的HO产物在最终转动量子数J = 1、1、2和4时的态-态微分截面(DCS)。通过(2 + 1)共振增强多光子电离(REMPI)光谱探测HO的转动激发。在比以往工作更广泛的碰撞能量范围内进行的DCS测量,使我们能够更详细地探测HO-He势能面(PES)。我们发现转动彩虹的经典近似可以预测DCS对碰撞能量的依赖性。采用密耦量子力学计算来生成DCS和部分截面。这里引入前后比(FBR)来比较实验和理论DCS。理论和实验均表明,碰撞能量的增加伴随着更多的前向散射。