English

Laser-induced 3D alignment and orientation of quantum-state-selected molecules

Chemical Physics 2019-03-27 v2 Atomic and Molecular Clusters Atomic Physics

Abstract

A strong inhomogeneous static electric field is used to spatially disperse a rotationally cold supersonic beam of 2,6-difluoroiodobenzene molecules according to their rotational quantum state. The molecules in the lowest lying rotational states are selected and used as targets for 3-dimensional alignment and orientation. The alignment is induced in the adiabatic regime with an elliptically polarized, intense laser pulse and the orientation is induced by the combined action of the laser pulse and a weak static electric field. We show that the degree of 3-dimensional alignment and orientation is strongly enhanced when rotationally state-selected molecules, rather than molecules in the original molecular beam, are used as targets.

Keywords

Cite

@article{arxiv.0906.2971,
  title  = {Laser-induced 3D alignment and orientation of quantum-state-selected molecules},
  author = {Iftach Nevo and Lotte Holmegaard and Jens H. Nielsen and Jonas L. Hansen and Henrik Stapelfeldt and Frank Filsinger and Gerard Meijer and Jochen Küpper},
  journal= {arXiv preprint arXiv:0906.2971},
  year   = {2019}
}

Comments

8 pages, 7 figures; v2: minor updates

R2 v1 2026-07-22T20:51:42.094Z