DocumentCode :
609513
Title :
Realisation of a compact laser-pumped Rubidium frequency standard-12 with < 1×10−12 stability at 1 second
Author :
Affolderbach, Christoph ; Matthey, R. ; Gruet, Florian ; Bandi, Thejesh ; Mileti, Gaetano
Author_Institution :
Lab. Temps-Frequence (LTF), Univ. de Neuchatel, Neuchatel, Switzerland
fYear :
2010
fDate :
13-16 April 2010
Firstpage :
1
Lastpage :
8
Abstract :
We have demonstrated a laser-optically pumped Rb clock with a short-term stability of 8×10-13 τ-1/2, using a simple cw pumping scheme. Further improvement towards the shot-noise limit of 2×10-13 τ-1/2 is expected from implementation of laser noise cancellation schemes, without need for pulsed operation or cold atoms. The main effects limiting the one-day stability of the clock, such as light shifts and clock cell temperature coefficient, are controlled and contribute <; 5×10-15 to the clock stability at one day. A compact clock demonstrator Physics Package was realised that contains the full clock physics including the complete laser optical bench within 1.1 litres of volume. Work is in progress to demonstrate the expected long-term stability with this clock demonstrator.
Keywords :
clocks; measurement by laser beam; rubidium; CW pumping scheme; Rb; clock one-day stability; cold atoms; compact clock demonstrator physics package; compact laser-pumped rubidium frequency standard; continuous-wave laser optical pumping; laser noise cancellation schemes; laser-optically pumped clock; short-term stability; shot-noise limit; time 1 s;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
EFTF-2010 24th European Frequency and Time Forum
Conference_Location :
Noordwijk
Print_ISBN :
978-1-4673-5970-2
Type :
conf
DOI :
10.1109/EFTF.2010.6533665
Filename :
6533665
Link To Document :
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