We present an upgraded setup for cooling and trapping of ytterbium atoms in a optical clock experiment. The experiment aims to cool and trap ytterbium atoms in a two stage magneto-optical trap (MOT) (at 399nm and 556nm for the first and second stage, respectively) and to probe the narrow-line clock transition at 578 nm in an optical lattice at the magic wavelength (759 nm). We describe here the generation of all the laser sources and the design of a new physic package, including the vacuum chamber and the atomic source.

Improved set-up for the ytterbium optical clock at INRIM / Pizzocaro, Marco; Bregolin, F.; Calonico, D.; Costanzo, Giovanni Antonio. - ELETTRONICO. - European Frequency and Time Forum & International Frequency Control Symposium (EFTF/IFC), 2013 Joint:(2013), pp. 379-382. (Intervento presentato al convegno European Frequency and Time Forum & International Frequency Control Symposium (EFTF/IFC), 2013 Joint tenutosi a Prague, CZ nel 21-25 July 2013) [10.1109/EFTF-IFC.2013.6702283].

Improved set-up for the ytterbium optical clock at INRIM

PIZZOCARO, MARCO;Bregolin, F.;COSTANZO, Giovanni Antonio
2013

Abstract

We present an upgraded setup for cooling and trapping of ytterbium atoms in a optical clock experiment. The experiment aims to cool and trap ytterbium atoms in a two stage magneto-optical trap (MOT) (at 399nm and 556nm for the first and second stage, respectively) and to probe the narrow-line clock transition at 578 nm in an optical lattice at the magic wavelength (759 nm). We describe here the generation of all the laser sources and the design of a new physic package, including the vacuum chamber and the atomic source.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2624894
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