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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >A multichannel SQUID magnetometer system based on double relaxation oscillation SQUIDs
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A multichannel SQUID magnetometer system based on double relaxation oscillation SQUIDs

机译:基于双张弛振荡SQUID的多通道SQUID磁力计系统

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We constructed a multichannel superconducting quantum interference device (SQUID) magnetometer system for magnetoencephalogram measurements. The SQUID is based on the double relaxation oscillation SQUID (DROS), which consists of a hysteretic signal SQUID and a reference junction, and shunted by a relaxation circuit of a resistor and an inductor. With the high flux-to-voltage transfers, usually larger than 1 mV//spl Phi//sub 0/, simple flux-locked loop circuits could be used for SQUID operation. The SQUID system consists of 37 integrated magnetometers, distributed on a hemispherical surface, and external feedback scheme was used to eliminate magnetic coupling with the adjacent channels. In addition to the 37 signal channels, 8 reference channels were installed to pickup background noise and to apply software gradiometer. The average noise level of the magnetometers is about 3 fT//spl radic/Hz at 100 Hz, operated inside a magnetically shielded room. The magnetometer system was applied to measure auditory-evoked fields.
机译:我们构建了用于脑磁图测量的多通道超导量子干扰设备(SQUID)磁力计系统。 SQUID基于双张弛振荡SQUID(DROS),它由磁滞信号SQUID和参考结组成,并由电阻器和电感器的张弛电路旁路。通过高通量到电压的传输,通常大于1 mV // spl Phi // sub 0 /,可以将简单的通量锁定环路用于SQUID操作。 SQUID系统由分布在半球形表面上的37个集成磁力计组成,并且使用外部反馈方案来消除与相邻通道的磁耦合。除37个信号通道外,还安装了8个参考通道以拾取背景噪声并应用软件梯度仪。磁力计的平均噪声水平在100 Hz时约为3 fT // splidic / Hz,在屏蔽室内运行。磁力计系统用于测量听觉诱发的磁场。

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