An automated magnetometer suitable for long lasting measurement under stable and controllable experimental conditions has been implemented. The device is based on coherent population trapping (CPT) produced by a multifrequency excitation. CPT resonance is observed when a frequency comb, generated by diode laser current modulation, excites Cs atoms confined in a /42.521 cm3, 2 Torr N2 buffered cell. A fully optical sensor is connected through an optical fiber to the laser head allowing for truly remote sensing and minimization of the field perturbation. A detailed analysis of the CPT resonance parameters as a function of the optical detuning has been made in order to get high sensitivity measurements. The magnetic field monitoring performances and the best sensitivity obtained in a balanced differential configuration of the sensor are presented.
Belfi, J., Bevilacqua, G., Biancalana, V., Dancheva, Y., Moi, L. (2007). All optical sensor for automated magnetometry based on coherent population trapping. JOURNAL OF THE OPTICAL SOCIETY OF AMERICA. B, OPTICAL PHYSICS, 24, 1482-1489 [10.1364/JOSAB.24.001482].
All optical sensor for automated magnetometry based on coherent population trapping
BELFI, JACOPO;BEVILACQUA, GIUSEPPE;BIANCALANA, VALERIO;DANCHEVA, YORDANKA;MOI, LUIGI
2007-01-01
Abstract
An automated magnetometer suitable for long lasting measurement under stable and controllable experimental conditions has been implemented. The device is based on coherent population trapping (CPT) produced by a multifrequency excitation. CPT resonance is observed when a frequency comb, generated by diode laser current modulation, excites Cs atoms confined in a /42.521 cm3, 2 Torr N2 buffered cell. A fully optical sensor is connected through an optical fiber to the laser head allowing for truly remote sensing and minimization of the field perturbation. A detailed analysis of the CPT resonance parameters as a function of the optical detuning has been made in order to get high sensitivity measurements. The magnetic field monitoring performances and the best sensitivity obtained in a balanced differential configuration of the sensor are presented.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/21613
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