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All optical sensor for automated magnetometry based on coherent population trapping

机译:用于基于相干人口陷阱的自动磁力分析的全光学传感器

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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 pi/4 X(2.5)(2) x 1 cm(3), 2 Torr N-2 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. (c) 2007 Optical Society of America.
机译:已经实现了适合在稳定和可控制的实验条件下进行长时间测量的自动磁力仪。该设备基于通过多频激励产生的相干人口陷阱(CPT)。当通过二极管激光电流调制产生的频率梳激发被限制在pi / 4 X(2.5)(2)x 1 cm(3),2 Torr N-2缓冲池中的Cs原子时,会观察到CPT共振。全光传感器通过光纤连接到激光头,从而实现真正的遥感和最小化场干扰。为了获得高灵敏度的测量结果,对CPT共振参数进行了详细分析,并将其作为光学失谐的函数。介绍了在传感器的平衡差分配置中获得的磁场监视性能和最佳灵敏度。 (c)2007年美国眼镜学会。

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