基于质子进动标量磁强计的主动磁场补偿系统在SQUID中的应用

J. Mazaheri, H. Kamrani, Farrokh Sareshtedari, M. Fardmanesh
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引用次数: 4

摘要

研制了一种灵敏的质子进动标量磁强计,用于磁场的主动补偿。为了建立SQUID应用的静默环境,可以考虑两种方法,即被动和主动磁屏蔽[1]。这两种方法各有其优点。在主动屏蔽方法中,使用矢量传感器进行主动屏蔽或校准系统,其主要问题是传感器和线圈的精确对准。这是由于必须精确考虑单个传感器的灵敏度和偏移量,它们的相互角度偏差以及线圈与传感器参考系统之间的不对准[2]。由于这些复杂性,标量磁强计在有源屏蔽的校准中比矢量磁强计具有更高的精度。在标量有源补偿系统中,屏蔽是通过在系统的不同线圈上施加适当的电流来消除(补偿)外部磁场。本文在质子进动磁强计的基础上,研制了一种磁补偿系统。质子进动标量磁强计用于外磁场测量,根据测量到的信号,其他处理和放大电路将补偿电流施加到系统线圈中[3]。传感器的读出电路是基于测量氢原子在外磁场周围的进动频率,为了提高信噪比以获得最大的灵敏度,在设计时特别考虑了噪声。该系统将用于需要非常安静的磁性环境的不同SQUID应用。值得注意的是,上述系统也可用于矢量磁力计校准的线圈系统的校准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active magnetic field compensation system using proton precession scalar magnetometer for SQUID based applications
A sensitive proton precession scalar magnetometer has been implemented and used for the active compensation of magnetic fields. For establishing a silent environment for SQUID applications, two approaches might be considered, which consist of passive and active magnetic shielding [1]. Each of these two approaches has its own benefits. In active shielding approach, using vector sensors for the active shielding or calibration systems, has a main complication in precise alignment of the sensor and the coils. This is due to the fact that, the sensitivities and offsets of individual sensors, their mutual angular deviations, and the misalignment between the coil and the sensor reference system have to be exactly considered [2]. Because of these complications, scalar magnetometers have an advantage of more accuracy than vector magnetometers in calibration of active shielding. In scalar active compensation system, shielding is based on elimination (compensation) of external magnetic field by applying proper currents through different coils of the system. In this work a magnetic compensation system has been made based on proton precession magnetometer. Proton Precession scalar magnetometer is used for external magnetic field measurement and based on the measured signal, other processing and amplification circuits apply the compensation currents into the coils of the system [3]. The readout circuits of the sensor which is based on measuring of the precession frequency of Hydrogen atoms around the external magnetic field, has been designed with especial noise consideration for increasing SNR for maximum sensitivity. This system is to be used for different SQUID applications which require a very silent magnetic environment. It should be noted that the mentioned system could be also used for the calibration of the coil systems for vector magnetometer calibration.
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