Title :
Stimulated Raman molecule production in a Bose-Einstein condensate
Author :
Wynar, R.H. ; Freeland ; Ryu, Chanseok ; Han, D.J. ; Heinzen
Author_Institution :
Dept. of Phys., Texas Univ., Austin, TX, USA
Abstract :
Summary form only given. We have created state-selected /sup 87/Rb/sub 2/ molecules at rest in a dilute Bose-Einstein condensate of /sup 87/Rb atoms with coherent free-bound stimulated Raman transitions. The transition lineshape exhibits a resonance lineshape with an extremely narrow width as small as 1.5 kHz. As a result, we are able to measure the molecular binding energy with an unprecedented precision of 1.2 kHz. We find that this lineshape is sensitive to elastic interactions between the molecules and the atomic Bose-condensate, and as a result, we are able to measure an atom-molecule scattering length for the first time. In addition, we are able to set an upper bound on the rate constant for inelastic collisions between the molecules and the atoms. This is the first measurement of molecule-condensate interactions, and is an important step towards the application of this method to the formation of a molecular Bose-Einstein condensate.
Keywords :
Bose-Einstein condensation; atom-molecule collisions; bound states; quantum optics; radiation pressure; rubidium; spectral line breadth; stimulated Raman scattering; /sup 87/Rb atoms; /sup 87/Rb/sub 2/; 1.5 kHz; Bose-Einstein condensate; Rb; Rb/sub 2/; atom-molecule scattering length; atomic Bose-condensate; coherent free-bound stimulated Raman transitions; dilute Bose-Einstein condensate; elastic interactions; inelastic collisions; lineshape; molecular Bose-Einstein condensate; molecular binding energy; molecule-condensate interactions; rate constant; resonance lineshape; state-selected molecules; stimulated Raman molecule production; transition lineshape; upper bound; Atom optics; Laser transitions; Light scattering; Optical scattering; Optical wavelength conversion; Physics; Production; Raman scattering; Solids; Tides;
Conference_Titel :
Quantum Electronics and Laser Science Conference, 2000. (QELS 2000). Technical Digest
Conference_Location :
San Francisco, CA, USA
Print_ISBN :
1-55752-608-7