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Characterization of the Nonlinear Focusing Magnet for Quasi - Integrable Optics Experiments at the University of Maryland Electron Ring

机译:马里兰大学电子环大学准积分光学实验的非线性聚焦磁体的表征。

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摘要

The University of Maryland Electron Ring (UMER) group is in the process of an experiment to test a new accelerator theory that mitigates beam loss from resonances, yet still supports stable beam orbits [1]. A nonlinear magnet element (an octupole channel consisting of several separate flexible printed circuit boards (PCBs)) has been constructed with preliminary measurements [2]. We present work done to characterize the channel. We use a Velmex stage with a Hall probe to generate gridded magnetic field measurements. This method gives a direct way to achieve fine resolution of the longitudinal dependence of the focusing field, which is a fundamental component of the nonlinear focusing theory. We concluded that the needed octupole strength profile is achievable and that given our assumptions of the measurement error, the magnetic center through the length of the channel remains within an acceptable tolerance.
机译:马里兰大学电子环(UMER)组正在进行一项实验,以测试一种新的加速器理论,该理论可减轻共振引起的束流损失,但仍支持稳定的束流轨道[1]。非线性磁体(由几个独立的柔性印刷电路板(PCB)组成的八极通道)已通过初步测量构建[2]。我们介绍为表征渠道所做的工作。我们使用带有霍尔探头的Velmex位移台来生成栅格化磁场测量值。该方法提供了一种直接方法来实现聚焦场纵向相关性的精细解析,这是非线性聚焦理论的基本组成部分。我们得出的结论是,所需的八极强度曲线是可以实现的,并且在我们假设测量误差的前提下,贯穿通道长度的磁心保持在可接受的公差范围内。

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