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A Rotating Coil Apparatus With Sub-Micrometer Magnetic Center Measurement Stability

机译:具有亚微米磁心测量稳定性的旋转线圈装置

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A rotating double coil apparatus has been designed and built so that the relative magnetic center change of a quadrupole is measured to an uncertainty smaller than 0.02 micrometers (=micron,$mu m$) for a single measurement. Furthermore, repeated measurements over about an hour vary by less than 0.1$mu m$and by less than 1$mu m$for periods of 24 hrs or longer. Correlation analyses of long data runs show that the magnet center measurement is sensitive to mechanical effects, such as vibration and rotating part wear, as well as to environmental effects, such as temperature and relative humidity. Evolving apparatus design has minimized mechanical noise and environmental isolation has reduced the effects of the surrounding environment so that sub-micron level measurement uncertainties and micron level stability have been achieved for multi-day measurement periods. Apparatus design evolution will be described in detail and correlation data taken on water-cooled electromagnet and adjustable permanent quadrupoles, which are about 350 mm in overall length, will be shown. These quads were prototypes for the linac quads of the Next Linear Collider (NLC) that had to meet the requirement that their magnetic centers change less than 1 micron during a 20% change in field strength. Thus it was necessary to develop an apparatus that could track the magnetic center with a fraction of a micron uncertainty.
机译:已经设计并制造了旋转双线圈设备,使得对于单次测量,四极的相对磁心变化被测量为小于0.02微米(=微米,μm)的不确定度。此外,在大约一个小时的重复测量中,在24小时或更长时间内,变化小于0.1μm,小于1μm。长期数据运行的相关分析表明,磁体中心测量对机械效应(例如振动和旋转零件磨损)以及环境效应(例如温度和相对湿度)敏感。不断发展的设备设计将机械噪声降至最低,环境隔离降低了周围环境的影响,因此,在多天的测量时间内,亚微米水平的测量不确定度和微米水平的稳定性得以实现。将详细描述设备设计的发展,并显示在水冷电磁体和可调式永久四极杆(全长约350毫米)上获得的相关数据。这些四边形是Next Linear Collider(NLC)直线加速器四边形的原型,必须满足其磁场强度在20%的变化期间其磁心变化小于1微米的要求。因此,有必要开发一种可以以微小的不确定度跟踪磁心的设备。

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