Inter-isotope effects in optimal dual-isotope loading into a shallow optical trap
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Atomic and Molecular Physics, and Optics
Reference41 articles.
1. Creating ultracold molecules by collisions with ultracold rare-gas atoms in an optical trap
2. Production of cold formaldehyde molecules for study and control of chemical reaction dynamics with hydroxyl radicals
3. Production of cold molecules via magnetically tunable Feshbach resonances
4. Formation of ultracold LiCs molecules
5. Observation of Heteronuclear Feshbach Molecules from aRb85–Rb87Gas
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