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Improved design of an optically switched inductance modulation circuit for noise reduction in SQUID systems

机译:降低SQUID系统噪声的光开关电感调制电路的改进设计

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We have modeled and optimized the design of an optically driven inductance modulation circuit, for use as part of a 1/f noise reduction scheme for SQUID magnetometers. We modulate the effective inductance of a photolithographically patterned coil via its mutual inductance with three concentric superconducting washers directly above the coil. The superconducting loops formed by each of these washers can be broken by sending laser light onto a constricted meander section of each of these washers. With the laser off, the superconducting washer loops diamagnetically shield the coil, and the coil has a low effective inductance. With the laser on, the meanders are driven normal and the superconducting washer loops are open, greatly reducing the shielding. The coil then has a high effective inductance. In a series of computational runs, we have optimized the design of this circuit in terms of its inductance modulation depth and its avoidance of flux jumping incidents. The free parameters in this study were the inner diameter of the coil, the number of loops in the coil, the dimensions of the three washers, and the size of the overlaps between washers.
机译:我们对光驱动电感调制电路的设计进行了建模和优化,以用作SQUID磁力计的1 / f降噪方案的一部分。我们通过在线圈正上方的三个同心超导垫圈,通过其互感来调制光刻图形线圈的有效电感。由这些垫圈中的每一个形成的超导环可以通过将激光发送到这些垫圈中的每一个的弯曲部分上而破裂。关闭激光后,超导垫圈回路会反磁屏蔽线圈,并且线圈的有效电感较低。激光器打开时,蛇形被正常驱动,超导垫圈回路打开,大大减小了屏蔽。线圈然后具有高有效电感。在一系列计算中,我们从电感调制深度和避免磁通跳跃事件的角度优化了该电路的设计。这项研究中的自由参数是线圈的内径,线圈中的圈数,三个垫圈的尺寸以及垫圈之间重叠的大小。

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