Title :
Frequency stability performance of a laser pumped rubidium vapor cell atomic frequency standard
Author_Institution :
Agilent Labs., Agilent Technol., Inc., Santa Clara, CA, USA
Abstract :
The AC Stark shift (the light shift) is very important in the performance of laser-pumped vapor cell atomic frequency standards. The frequency stability of a compact rubidium vapor cell atomic frequency standard with an AC Stark shift suppression laser pumping method was evaluated. The applications of such a device include serving as primary reference clocks in communication systems such as Stratum 1 reference clocks.
Keywords :
Stark effect; atomic clocks; frequency stability; frequency standards; optical pumping; rubidium; AC Stark shift suppression laser pumping method; Rb; Stratum 1 reference clocks; communication systems; frequency stability performance; laser pumped rubidium vapor cell atomic frequency standard; light shift; primary reference clocks; Atomic clocks; Frequency measurement; Laser excitation; Laser stability; Laser transitions; Measurement by laser beam; Stability criteria; AC Stark shift; frequency stability; light shift; optical pumping; vapor cell atomic frequency standard;
Conference_Titel :
European Frequency and Time Forum & International Frequency Control Symposium (EFTF/IFC), 2013 Joint
Conference_Location :
Prague
DOI :
10.1109/EFTF-IFC.2013.6702296