论文标题

单向旋转分子中的回声

Echoes in Unidirectionally Rotating Molecules

论文作者

Xu, Long, Tutunnikov, Ilia, Zhou, Lianrong, Lin, Kang, Qiang, Junjie, Lu, Peifen, Prior, Yehiam, Averbukh, Ilya Sh., Wu, Jian

论文摘要

摘要我们报告了分子单向旋转(UDR)回声的实验观察结果,并在经典和机械上分析了它们的起源和行为。分子被两个延迟的偏振超短激光脉冲激发,并且通过爆炸分子并从检测到的后退离子动量中重建其空间取向来测量回声。与线性极化脉冲诱导的比对回声不同,这里的轴向对称性因扭曲的极化而打破,从而产生了分子的单向旋转。我们发现,回声的旋转感觉也受第二脉冲的扭曲感控制的,即使其强度比第一个脉冲的强度弱得多。在我们的理论研究中,我们依靠经典的相空间分析以及激光驱动的分子动力学的三维量子模拟。两种方法都很好地再现了实验结果。通常,回声,尤其是独特的UDR回声,为研究密集分子气体中松弛过程的新工具提供了新的工具。

Abstract We report the experimental observation of molecular unidirectional rotation (UDR) echoes, and analyze their origin and behavior both classically and quantum mechanically. The molecules are excited by two time-delayed polarization-twisted ultrashort laser pulses and the echoes are measured by exploding the molecules and reconstructing their spatial orientation from the detected recoil ions momenta. Unlike alignment echoes which are induced by linearly polarized pulses, here the axial symmetry is broken by the twisted polarization, giving rise to molecular unidirectional rotation. We find that the rotation sense of the echo is governed by the twisting sense of the second pulse even when its intensity is much weaker than the intensity of the first pulse. In our theoretical study, we rely on classical phase space analysis and on three-dimensional quantum simulations of the laser-driven molecular dynamics. Both approaches nicely reproduce the experimental results. Echoes in general, and the unique UDR echoes in particular, provide new tools for studies of relaxation processes in dense molecular gases.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源