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Control of Ultracold Photodissociation with Magnetic Fields

Autor
Moszyński, Robert
McDonald, M.
Majewska, Iwona
Zelevinsky, T.
McGuyer, B. H.
Kondov, S. S.
Lee, C.-H.
Data publikacji
2018
Abstrakt (EN)

Photodissociation of a molecule produces a spatial distribution of photofragments determined by the molecular structure and the characteristics of the dissociating light. Performing this basic reaction at ultracold temperatures allows its quantum mechanical features to dominate. In this regime, weak applied fields can be used to control the reaction. Here, we photodissociate ultracold diatomic strontium in magnetic fields below 10 G and observe striking changes in photofragment angular distributions. The observations are in excellent agreement with a multichannel quantum chemistry model that includes nonadiabatic effects and predicts strong mixing of partial waves in the photofragment energy continuum. The experiment is enabled by precise quantum-state control of the molecules.

Dyscyplina PBN
nauki chemiczne
Czasopismo
Physical Review Letters
Tom
120
Zeszyt
3
Strony od-do
art.no.033201
ISSN
0031-9007
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