We present a new laser setup designed for high-precision spectroscopy on laser cooled atomic strontium. The system, which is entirely based on semiconductor laser sources, delivers 200 mW at 461 nm for cooling and trapping atomic strontium from a thermal source, 4 mW at 497 nm for optical pumping from the metastable state, 12 mW at 689 nm on linewidth less than 1 kHz for second-stage cooling of the atomic sample down to the recoil limit, 1.2 W at 922 nm for optical trapping close to the “magic wavelength” for the 0–1 intercombination line at 689 nm. The 689 nm laser was already employed to perform a frequency measurement of the 0–1 intercombination line with a relative accuracy of , and the ensemble of laser sources allowed the loading in a conservative dipole trap of multi-isotopes strontium mixtures. The simple and compact setup developed represents one of the first steps towards the realization of a transportable optical standards referenced to atomic strontium.

N. Poli. G. Ferrari, M. Prevedelli, F. Sorrentino, R. E. Drullinger, G. M. Tino (2006). Laser sources for precision spectroscopy on atomic strontium. SPECTROCHIMICA ACTA. PART A, MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 65, 981-986 [10.1016/j.saa.2005.10.024].

Laser sources for precision spectroscopy on atomic strontium

PREVEDELLI, MARCO;
2006

Abstract

We present a new laser setup designed for high-precision spectroscopy on laser cooled atomic strontium. The system, which is entirely based on semiconductor laser sources, delivers 200 mW at 461 nm for cooling and trapping atomic strontium from a thermal source, 4 mW at 497 nm for optical pumping from the metastable state, 12 mW at 689 nm on linewidth less than 1 kHz for second-stage cooling of the atomic sample down to the recoil limit, 1.2 W at 922 nm for optical trapping close to the “magic wavelength” for the 0–1 intercombination line at 689 nm. The 689 nm laser was already employed to perform a frequency measurement of the 0–1 intercombination line with a relative accuracy of , and the ensemble of laser sources allowed the loading in a conservative dipole trap of multi-isotopes strontium mixtures. The simple and compact setup developed represents one of the first steps towards the realization of a transportable optical standards referenced to atomic strontium.
2006
N. Poli. G. Ferrari, M. Prevedelli, F. Sorrentino, R. E. Drullinger, G. M. Tino (2006). Laser sources for precision spectroscopy on atomic strontium. SPECTROCHIMICA ACTA. PART A, MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 65, 981-986 [10.1016/j.saa.2005.10.024].
N. Poli. G. Ferrari; M. Prevedelli; F. Sorrentino; R. E. Drullinger; G. M. Tino
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/29485
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