DocumentCode :
3846187
Title :
Characterization of a Far-Field Microwave Magnetic Field Strength Sensor Based on Double Radiooptical Resonance
Author :
Mustafa Cetintas;Ramiz Hamid;Osman Sen;Soydan Cakir
Author_Institution :
T?B?TAK?UME (National Metrology Institute), Gebze Yerle?kesi, Gebze, Turkey
Volume :
52
Issue :
1
fYear :
2010
Firstpage :
21
Lastpage :
31
Abstract :
We experimentally investigated the resonance interaction of laser and microwave fields with 133Cs atomic gas in far-field and free-space conditions. The observed double radiooptical resonance (DROR) on the D2 line of Cs atoms was used as a novel-type field sensor, based on the laser spectroscopy technique, for the detection and investigation of the time-varying magnetic field. The effects of the Cs cell length, both laser and microwave powers, and their polarizations to the changing amplitude of the DROR signal were investigated. Almost linear dependencies of the DROR signal amplitude with both laser and microwave powers have been observed. The splitting of DROR signal under a constant magnetic field was detected. The time response of the sensor system was investigated under pulsed microwave. The amplitude fluctuation of the microwave magnetic field was measured using the DROR signal and the isotropic probe simultaneously. The stability of amplitude fluctuations of the microwave field with time was analyzed by using Allan variance statistics.
Keywords :
"Masers","Atomic beams","Atomic measurements","Laser beams","Microwave measurements","Optical sensors","Power lasers"
Journal_Title :
IEEE Transactions on Electromagnetic Compatibility
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.2009.2038227
Filename :
5398977
Link To Document :
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