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조범석

Zhao, Bum Suk
Molecular motion control Lab.
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Scattering of adiabatically aligned molecules by nonresonant optical standing waves

Author(s)
Kim, Tae WooZhao, Bum Suk
Issued Date
2020-10-21
URI
https://scholarworks.unist.ac.kr/handle/201301/78095
Fulltext
http://new.kcsnet.or.kr/?mid=abstract_view&uid=56331&page=1&qpage=&word=TaeWoo&wordfield=author&main_number=126
Citation
제126회 대한화학회 학술발표회 및 총회
Abstract
We study the effect of rotational state-dependent alignment in the scattering of molecules by optical fields. CS2 molecules in their lowest few rotational states are adiabatically aligned and transversely accelerated by a nonresonant optical standing wave. The width of the measured transverse velocity distribution increases to 160 m/s with the field intensity, while its central peak position moves 10 to -10 m/s. These changes are well reproduced by numerical simulations based on the rotational state-dependent alignment but cannot be modeled when ignoring these effects. Moreover, the molecular scattering by an off-resonant optical field amounts to manipulating the translational motion of molecules in a rotational state-specific way. Conversely, our results demonstrate that scattering from a nonresonant optical standing wave is a viable method for rotational state selection of nonpolar molecules.
Publisher
대한화학회

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