Lai K-F, Salumbides E J, Ubachs W, Beyer M
Department of Physics and Astronomy, LaserLaB, Vrije Universiteit De Boelelaan 1081, 1081 HV Amsterdam, Netherlands.
Phys Rev Lett. 2021 Oct 29;127(18):183001. doi: 10.1103/PhysRevLett.127.183001.
Shape resonances in H_{2}, produced as reaction intermediates in the photolysis of H_{2}S precursor molecules, are measured in a half-collision approach. Before disintegrating into two ground state H atoms, the reaction is quenched by two-photon Doppler-free excitation to the F electronically excited state of H_{2}. For J=13, 15, 17, 19, and 21, resonances with lifetimes in the range of nano- to milliseconds were observed with an accuracy of 30 MHz (1.4 mK). The experimental resonance positions are found to be in excellent agreement with theoretical predictions when nonadiabatic and quantum electrodynamical corrections are included. This is the first time such effects are observed in collisions between neutral atoms. From the potential energy curve of the H_{2} molecule, now tested at high accuracy over a wide range of internuclear separations, the s-wave scattering length for singlet H(1s)+H(1s) scattering is determined at a=0.2735_{31}^{39} a_{0}.
通过半碰撞方法测量了作为H₂S前驱体分子光解反应中间体产生的H₂中的形状共振。在分解为两个基态H原子之前,该反应通过双光子无多普勒激发猝灭到H₂的F电子激发态。对于J = 13、15、17、19和21,观察到寿命在纳秒到毫秒范围内的共振,精度为30 MHz(1.4 mK)。当包括非绝热和量子电动力学修正时,实验共振位置与理论预测结果非常吻合。这是首次在中性原子之间的碰撞中观察到此类效应。根据现在在很宽的核间距范围内经过高精度测试的H₂分子势能曲线,确定单重态H(1s)+H(1s)散射的s波散射长度为a = 0.2735₃₁³⁹a₀。