arXiv · 1109.0588
Vacuum-Induced Coherence in Ultracold Photoassociative Ro-Vibrational Excitations
Abstract
We show that coherence between two excited ro-vibrational states belonging to the same molecular electronic configuration arises quite naturally due to their interaction with electromagnetic vacuum. For initial preparation of a molecule in the desired ro-vibrational states, we propose to employ the method of ultracold photoassociation. Spontaneous decay of the excited molecule then gives rise to vacuum induced coherence between the excited ro-vibrational states. We demonstrate theoretically an interesting interplay of effects due to vacuum induced coherence and photoassociation. We apply our theory to photoassociation of bosonic Ytterbium (^{174}Yb) atoms which appear to be a promising system for exploring such interplay. The effects discussed here can be important for controlling decoherence and dissipation in molecular systems.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Sumanta Das, Arpita Rakshit, Bimalendu Deb. 2012-01-11. Vacuum-Induced Coherence in Ultracold Photoassociative Ro-Vibrational Excitations. https://doi.org/10.1103/physreva.85.011401
Cite the original work for its findings. Save a collection to share your selection of sources.