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Cryogenic current comparator for absolute measurements of the dark current of superconducting cavities for TESLA

机译:低温电流比较器,用于TESLA超导腔暗电流的绝对测量

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A new SQUID based measurement system for detecting dark currents, generated by the TESLA (Tera Electron Volt Energy Superconducting Linear Accelerator) cavities is proposed. It makes use of the Cryogenic Current Comparator principle and senses dark currents in the nA range. To reach the maximum possible energy in the TESLA project is a strong motivation to push the gradients of the superconducting cavities closer to the physical limit of 50 MV/m. The field emission of electrons (dark current) of the cavities at strong fields may limit the maximum gradient. The absolute measurement of the dark current in correlation with the gradient will give a proper value to compare and classify the cavities. This contribution describes a Cryogenic Current Comparator (CCC) as an excellent tool for this purpose. The most important component of the CCC is a high performance DC SQUID system which is able to measure extremely low magnetic fields, e.g., caused by the extracted dark current. For this reason the SQUID input coil is connected across a special designed pick-up coil for the electron beam. Both the SQUID input coil and the pick-up coil form a closed superconducting loop so that the CCC is able to detect dc currents down to 1 nA//spl radic/Hz. Design issues and the application for the CHECHIA (horizontal test cryostat) cavity test stand at DESY are discussed.
机译:提出了一种新的基于SQUID的测量系统,该系统用于检测由TESLA(Tera电子伏特能量超导线性加速器)腔产生的暗电流。它利用低温电流比较器原理,并检测nA范围内的暗电流。为了在TESLA项目中达到最大可能的能量,强烈推动超导腔的梯度接近50 MV / m的物理极限。空穴在强电场下的电子场发射(暗电流)可能会限制最大梯度。与梯度相关的暗电流的绝对测量值将提供适当的值来比较和分类空腔。此贡献将低温电流比较器(CCC)描述为达到此目的的出色工具。 CCC的最重要组件是高性能DC SQUID系统,该系统能够测量极低的磁场,例如由提取的暗电流引起的磁场。因此,SQUID输入线圈跨接经过特殊设计的电子束拾取线圈。 SQUID输入线圈和拾波线圈都形成一个闭合的超导环路,因此CCC能够检测到低至1 nA // spl radic / Hz的直流电流。讨论了DESY的CHECHIA(水平测试低温恒温器)腔测试台的设计问题和应用。

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