Impulsive Laser Induced Alignment of Molecules Dissolved in Helium Nanodroplets
arXiv:1212.2862 · doi:10.1103/PhysRevLett.110.093002
Abstract
We show that a 450 fs nonresonant, moderately intense, linearly polarized laser pulse can induce field-free molecular axis alignment of methyliodide molecules dissolved in a helium nanodroplet. Time-resolved measurements reveal rotational dynamics much slower than that of isolated molecules and, surprisingly, complete absence of the sharp transient alignment recurrences characteristic of gas phase molecules. Our results presage a range of new opportunities for exploring both molecular dynamics in a dissipative environment and the properties of He nanodroplets.
5 pages, 4 figures
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Cited by in corpus (35)
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