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Systematic study of Optical Feshbach Resonances in an ideal gas

Published 1 Apr 2011 in physics.atom-ph, cond-mat.quant-gas, and physics.gen-ph | (1104.0210v2)

Abstract: Using a narrow intercombination line in alkaline earth atoms to mitigate large inelastic losses, we explore the Optical Feshbach Resonance (OFR) effect in an ultracold gas of bosonic <sup>88<sup>{88}Sr. A systematic measurement of three resonances allows precise determinations of the OFR strength and scaling law, in agreement with coupled-channels theory. Resonant enhancement of the complex scattering length leads to thermalization mediated by elastic and inelastic collisions in an otherwise ideal gas. OFR could be used to control atomic interactions with high spatial and temporal resolution.

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