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BEAM POSITIONING AND MONITORING IN THE RACETRACK MICROTRON EINDHOVEN

机译:赛道定位和监测赛道MicroTron Eindhoven

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A scheme to compensate for the effect of misalignments in the racetrack microtron Eindhoven is presented. An array of small dipole magnets will be employed to obtain closed orbits. These dipoles are located at the symmetry axis of the microtron, in the drift space between the two bending magnets. For each orbit a radial stripline beam position monitor (BPM) will be installed in the field free region. The strength of the corrector dipole magnet in the nth orbit is adjusted with the BPM signal in the (n + 1)th orbit. The design of the BPM's is described. It will be shown that a rectangular geometry has a distinct advantage over a conventional circular geometry since it is less dependent on vertical displacements of the beam. Expressions for the difference-over-sum signal are given and compared with that for a circular geometry. Results of measurements performed in a test bench on prototype BPM's are discussed.
机译:提出了一种弥补赛道Microtron Eindhoven中未对准影响的方案。将采用一系列小偶极磁体来获得闭合轨道。这些偶极子位于微量的对称轴,在两个弯曲磁体之间的漂移空间中。对于每个轨道,径向带状线束位置监视器(BPM)将安装在场自由区域中。用(n + 1)轨道中的BPM信号调节Nth轨道中的校正器偶极磁铁的强度。描述了BPM的设计。结果表明,矩形几何形状在传统的圆形几何形状上具有明显的优势,因为它较少依赖于光束的垂直位移。给出差异和信号的表达式并与圆形几何形状进行比较。讨论了在原型BPM的测试台上进行的测量结果。

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