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OPTICAL TRANSITION RADIATION INTERFEROMETRY FOR THE A0 PHOTOINJECTOR

机译:用于A0光突出器的光学过渡辐射干涉测量器

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Optical Transition Radiation Interferometry (OTRI) is a promising diagnostic technique and has been successfully developed and used for investigation of relativistic beams. For mid-energy accelerators the technique is traditionally based on thin polymer films (the first one is being transparent for visible light), which causes beam multiple scattering of about 1 mrad. A disadvantage of those films is unacceptable vacuum properties for photoinjectors and accelerators using superconducting cavities. We have studied the application of thin mica sheets for the OTRI diagnostics at the A0 Photoinjector in comparison with 2.5 μm thick Mylar films. This diagnostic is also applicable for the ILCTA-NML accelerator test facility that is planned at Fermilab. This report discus the experimental setups of the OTR interferometer for the A0 Photoinjector and presents comparisons of simulations and measurements obtained using Mylar and mica-based interferometers.
机译:光学过渡辐射干涉测量(OTRI)是一种有前途的诊断技术,并已成功开发并用于对相对论梁的研究。对于中间能量促进剂,该技术传统上基于薄聚合物膜(第一个用于可见光透明),这导致梁多个散射约1mRad。这些薄膜的缺点是使用超导空腔的光灭虫器和促进剂的不可接受的真空性质。我们研究了与2.5μm厚的Mylar薄膜相比,在A0 PhotoInjector的OTRI诊断中施加薄云母表。该诊断也适用于在Fermilab上计划的ILCTA-NML加速器测试设施。此报告将OTR干涉仪的实验设置讨论为A0 PhotoInjector,并呈现使用Mylar和基于云母的干涉仪获得的模拟和测量的比较。

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