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Shimming techniques for the ultraprecise muon g-2 storage ring at the AGS

机译:AGS超精密μong-2存储环的匀场技术

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Major components are in an advanced state of construction for a 7 meter radius 0.1 PPM precision storage ring. Detailed techniques are planned for static shimming of the assembly to at least 10 PPM magnetic field uniformity prior to the use of field correction coils. An air gap behind each ultra-pure iron pole piece strongly decouples the aperture field shape from the properties of the 1006 iron yoke. Iron wedges whose thickness varies across the width of the poles with slope of /spl sim/1/60 are used to eliminate the gradient produced by the C-magnet shape required for open access for the decay electron counter on the inside radius of the storage ring magnet. These wedges are 10 cm in azimuthal length and can be radially adjusted for short wavelength field adjustments. A horizontal motion of 50 /spl mu/m effectively adjusts the 10 cm half-gap aperture by 1 /spl mu/m (or 10 PPM). This and other techniques to adjust dipole, quadrupole, sextuple, etc. multipoles will be described.
机译:主要组件处于先进的构造状态,半径为7米,精度为0.1 PPM。在使用场校正线圈之前,已计划了详细的技术来将组件静态匀场至至少10 PPM磁场均匀性。每个超纯铁极靴后面的气隙将孔径场形状与1006铁轭的特性强烈分离。铁楔的厚度在整个磁极宽度上以/ spl sim / 1/60的斜率变化,用于消除由C型磁铁形状产生的梯度,该C型磁体形状对于在存储的内半径上的衰变电子计数器的开放访问是必需的环形磁铁。这些楔形件的方位角长度为10 cm,可以径向调整以进行短波长场调整。 50 / spl mu / m的水平运动可将10 cm半间隙孔径有效地调整1 / spl mu / m(或10 PPM)。将描述调节偶极子,四极子,六元组等多极子的这种和其他技术。

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