International audienceThis article describes the work performed at BNM-SYRTE (Observatoire de Paris) in the past few years, toward the improvement and the use of microwave frequency standards using laser-cooled atoms. First, recent improvements of the 133Cs and 87Rb atomic fountains are described. An important advance is the achievement of a fractional frequency instability of 1.6×10tau where tau is the measurement time in seconds, thanks to the routine use of a cryogenic sapphire oscillator as an ultra-stable local frequency reference. The second advance is a powerful method to control the frequency shift due to cold collisions. These two advances lead to a fractional frequency in stability of 2×10 at 50 000 s between two independent prima...
International audienceIn this article, we report on the work done with the LNE–SYRTE atomic clock en...
International audienceIn this article, we report on the work done with the LNE–SYRTE atomic clock en...
International audienceIn this article, we report on the work done with the LNE–SYRTE atomic clock en...
International audienceThis article describes the work performed at BNM-SYRTE (Observatoire de Paris)...
International audienceThis article describes the work performed at BNM-SYRTE (Observatoire de Paris)...
International audienceThis article describes the work performed at BNM-SYRTE (Observatoire de Paris)...
International audienceThis paper describes advances in microwave frequency standards using laser-coo...
International audienceThis paper describes advances in microwave frequency standards using laser-coo...
International audienceThis paper describes advances in microwave frequency standards using laser-coo...
International audienceThis paper describes advances in microwave frequency standards using laser-coo...
International audienceThis paper describes the work performed at BNM-SYRTE (Observatoire de Paris) o...
International audienceThis paper describes the work performed at BNM-SYRTE (Observatoire de Paris) o...
This paper describes advances in microwave frequency standards using laser-cooled atoms at BNM-SYRTE...
This paper describes the work performed at BNM-SYRTE (Observatoire de Paris) over the past few years...
This paper describes the work performed at BNM-SYRTE (Observatoire de Paris) over the past few years...
International audienceIn this article, we report on the work done with the LNE–SYRTE atomic clock en...
International audienceIn this article, we report on the work done with the LNE–SYRTE atomic clock en...
International audienceIn this article, we report on the work done with the LNE–SYRTE atomic clock en...
International audienceThis article describes the work performed at BNM-SYRTE (Observatoire de Paris)...
International audienceThis article describes the work performed at BNM-SYRTE (Observatoire de Paris)...
International audienceThis article describes the work performed at BNM-SYRTE (Observatoire de Paris)...
International audienceThis paper describes advances in microwave frequency standards using laser-coo...
International audienceThis paper describes advances in microwave frequency standards using laser-coo...
International audienceThis paper describes advances in microwave frequency standards using laser-coo...
International audienceThis paper describes advances in microwave frequency standards using laser-coo...
International audienceThis paper describes the work performed at BNM-SYRTE (Observatoire de Paris) o...
International audienceThis paper describes the work performed at BNM-SYRTE (Observatoire de Paris) o...
This paper describes advances in microwave frequency standards using laser-cooled atoms at BNM-SYRTE...
This paper describes the work performed at BNM-SYRTE (Observatoire de Paris) over the past few years...
This paper describes the work performed at BNM-SYRTE (Observatoire de Paris) over the past few years...
International audienceIn this article, we report on the work done with the LNE–SYRTE atomic clock en...
International audienceIn this article, we report on the work done with the LNE–SYRTE atomic clock en...
International audienceIn this article, we report on the work done with the LNE–SYRTE atomic clock en...