Development of a Miniature Laser-Cooled Cs Fountain Frequency Standard at NIST
Thomas P. Heavner, D. M. Meekhof, D. Kujundzic, Steven R. Jefferts
Abstract
Thomas P. Heavner, D. M. Meekhof, D. Kujundzic, Steven R. Jefferts
Abstract
We are developing a small laser-cooled Cs fountain at NIST with the goal of achieving exceptional short-term stability of /spl sigma//sub y/(/spl tau/)/spl ap/2/spl times/10/sup -14//spl tau//sup -1/2/ with a long-term stability of /spl ap/10/sup -15/. Although this device is not designed to achieve the accuracy of the NIST primary frequency standard NIST-F1, this small, portable system will prove valuable as a local oscillator with intermediate accuracy. We discuss the performance goals of this frequency standard, the design philosophy, the existing physics package, and future directions.
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We are developing a small laser-cooled Cs fountain at NIST with the goal of achieving exceptional short-term stability of /spl sigma//sub y/(/spl tau/)/spl ap/2/spl times/10/sup -14//spl tau//sup -1/2/ with a long-term stability of /spl ap/10/sup -15/. Although this device is not designed to achieve the accuracy of the NIST primary frequency standard NIST-F1, this small, portable system will prove valuable as a local oscillator with intermediate accuracy. We discuss the performance goals of this frequency standard, the design philosophy, the existing physics package, and future directions.
Key concepts: NIST, Frequency standard, Fountain, Laser, Term (time), Stability (learning theory), Physics, Computer science