English

Radiation Pressure Force from Optical Cycling on a Polyatomic Molecule

Atomic Physics 2016-06-22 v1

Abstract

We demonstrate multiple photon cycling and radiative force deflection on the triatomic free radical strontium monohydroxide (SrOH). Optical cycling is achieved on SrOH in a cryogenic buffer-gas beam by employing the rotationally closed P(N=1)P\left(N''=1\right) branch of the vibronic transition X~2Σ+(000)A~2Π1/2(000)\tilde{X}^{2}\Sigma^{+}\left(000\right)\leftrightarrow\tilde{A}^{2}\Pi_{1/2}\left(000\right). A single repumping laser excites the Sr-O stretching vibrational mode, and photon cycling of the molecule deflects the SrOH beam by an angle of 0.20.2^{\circ} via scattering of 100\sim100 photons per molecule. This approach can be used for direct laser cooling of SrOH and more complex, isoelectronic species.

Cite

@article{arxiv.1603.04089,
  title  = {Radiation Pressure Force from Optical Cycling on a Polyatomic Molecule},
  author = {Ivan Kozyryev and Louis Baum and Kyle Matsuda and Boerge Hemmerling and John M. Doyle},
  journal= {arXiv preprint arXiv:1603.04089},
  year   = {2016}
}
R2 v1 2026-06-22T13:09:51.430Z