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在多通道超导量子干涉器件(SQUID)磁探测系统中,磁场电压转换系数(∂ B/∂ V)是系统的一个重要参数由于SQUID器件和读出电路之间不可避免地存在差异性因此对传感器系统进行系统标定(每个通道的单独标定)显得十分重要本文采用(PCB) 板印制圆形线圈对36通道心磁系统进行标定,并与传统的亥姆霍兹方形线圈产生均匀场的标定方法进行比较结果显示PCB圆形线圈的标定结果 在1.46–1.73 pT·mV-1 之间,亥姆霍兹方形线圈标定的结果大都在1.56–1.64 pT·mV-1之间,结果基本一致.
关键词:
超导量子干涉器件
磁探测
磁场-电压转换系数
系统标定 相似文献
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A scanning superconducting quantum interference device microscope for room temperature samples
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We have constructed a scanning low-Tc superconducting quantum interference device (SQUID) microscope, in which the SQUID is mounted on the lower end of a copper rod and cooled to liquid helium temperature. There is a 65μm thick sapphire window under the SQUID. The sample at room temperature underneath the window can be scanned to produce magnetic images. The microscope has a spatial resolution of 100-150μm and a magnetic field sensitivity of 3-60pT/$\sqrt{Hz}$ in a magnetically unshielded environment. We have used this scanning SQUID microscope to measure various room temperature samples. 相似文献
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A SENSITIVE AND STABLE CONFOCAL FABRY-PéROT INTERFEROMETER FOR SURFACE ULTRASONIC VIBRATION DETECTION
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A new confocal Fabry-Pérot interferometer (CFPI) has been constructed. By using both of the conjugate rays, the sensitivity of the system was doubled. Moreover, the negative feedback control loop of a single-chip microcomputer (MCS-51) was applied to stabilize the working point at an optimum position. The system has been used in detecting the piezoelectric ultrasonic vibration on the surface of an aluminium sample. 相似文献
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