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A single-frequency nanosecond pulsed deep-ultraviolet coherent light source consisting of a frequency-tripled nanosecond pulsed Ti:sapphire laser injection-seeded by a single-frequency cw Ti: sapphire laser was developed for manipulating silicon atoms. The long-term single-frequency operation was demonstrated successfully with matching between the optical frequency of the seed laser and the cavity...
Output performances of the injection-seeded narrow-linewidth nanosecond pulsed deep-ultraviolet coherent light source we developed here are discussed with the optogalvanic spectroscopy of silicon atoms. The spectroscopy indicates its potentials useful for controlling atomic waves resonantly.
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