Ghosh S, Danielson J R, Surko C M
Physics Department, University of California San Diego, La Jolla, California 92093, USA.
Phys Rev Lett. 2020 Oct 23;125(17):173401. doi: 10.1103/PhysRevLett.125.173401.
Positrons attach to most molecules through Feshbach resonant excitation of fundamental vibrational modes, and this leads to greatly enhanced annihilation rates. In all but the smallest molecules, vibrational energy transfer further enhances these annihilation rates. Evidence is presented that in alkane and cycloalkane molecules, this can occur by the excitation of other than fundamental vibrations and produce roughly comparable annihilation rates. These features are compared to infrared absorption spectra. A possible mechanism is discussed that involves combination and overtone vibrations.
正电子通过基本振动模式的费什巴赫共振激发与大多数分子结合,这导致湮灭率大大提高。除了最小的分子外,振动能量转移进一步提高了这些湮灭率。有证据表明,在烷烃和环烷烃分子中,这可以通过激发非基本振动来实现,并产生大致相当的湮灭率。将这些特征与红外吸收光谱进行了比较。讨论了一种可能涉及组合振动和泛音振动的机制。