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- W2767014765 abstract "This thesis reports on a novel scheme for controlling the scattering properties of an ultracold atomic gas with laser light. We show theoretically and experimentally that light near-resonant with a molecular bound-to-bound transition can be used to shift the magnetic field at which a magnetic Feshbach resonance occurs. This makes it possible to tune the interaction strength with laser light and at the same time induce considerably less loss than an optical Feshbach resonance would do. To find an appropriate bound-to-bound transition for this scheme, we perform excited-state spectroscopy. When applying laser light resonant with one such bound-to-bound transition we observe an Autler-Townes splitting of the magnetic Feshbach resonance. We find good agreement between the theoretical model and experimental data. Our scheme can be used for a variety of future applications. For example, light patterns created by holographic masks could serve as a tool for changing the scattering length of ultracold atoms on very short time and length scales." @default.
- W2767014765 created "2017-11-10" @default.
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- W2767014765 date "2009-01-01" @default.
- W2767014765 modified "2023-09-24" @default.
- W2767014765 title "Optical Control of a Magnetic Feshbach Resonance" @default.
- W2767014765 hasPublicationYear "2009" @default.
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