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The Dual-Cryogenic Current Comperator (DCCC) as a new Prototype CCC for Beamline Monitoring

机译:双低温电流兼容器(DCCC)作为光束线监测的新型CCC

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Cryogenic Current Comperators (CCC) are an innovative concept for non-destructive measurements of nA currents caused by moving charged particles in beam lines. Classical CCC designs consist of a toroidal pickup coil around a highly magnetic permeable core inductively coupled to a Direct Current Superconducting Quantum Interference Device (DC-SQUID) in combination with a meander shaped superconducting shield. Previous experiments have shown that increasing the inductance of the pickup coil by utilizing a larger amount of the same ring core material reduces the noise density by the square root of the inductance change. We introduce a novel prototype, the Dual-CCC (DCCC), which doubles the pickup inductance in respect to the previous design by adding a second identical core with a second pickup coil and SQUID, which can be read out independently. The combined output exhibits a current sensitivity of about 2 pAHz−1/2 in the white noise region.
机译:低温电流合作器(CCC)是由梁线中移动带电粒子引起的Na电流的非破坏性测量的创新概念。经典CCC设计由环形拾取线圈组成,围绕具有与直流超导量子干扰装置(DC-Squid)的高磁性可渗透芯围绕的环形拾取线圈,与曲折形超导屏蔽组合。先前的实验表明,通过利用较大量的相同环芯材料来增加拾取线圈的电感降低了电感变化的平方根的噪声密度。我们介绍了一种新颖的原型,双CCC(DCCC),其通过用第二拾取线圈和鱿鱼添加第二个相同的核心来加倍拾取电感,这可以通过第二拾取线圈和鱿鱼来独立读出。组合输出显示出约2个Pahz的电流灵敏度 -1/2 在白噪声区域。

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