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 View the MathML source 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 2.3×10−11, 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.

Laser sources for precision spectroscopy on atomic strontium / N. Poli; G. Ferrari; M. Prevedelli; F. Sorrentino; R. E. Drullinger; G. M. Tino. - In: SPECTROCHIMICA ACTA. PART A, MOLECULAR AND BIOMOLECULAR SPECTROSCOPY. - ISSN 1386-1425. - STAMPA. - 63 A:(2006), pp. 981-986. [10.1016/j.saa.2005.10.024]

Laser sources for precision spectroscopy on atomic strontium

POLI, NICOLA;SORRENTINO, FIODOR;TINO, GUGLIELMO MARIA
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 View the MathML source 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 2.3×10−11, 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
63 A
981
986
N. Poli; G. Ferrari; M. Prevedelli; F. Sorrentino; R. E. Drullinger; G. M. Tino
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/316548
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