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首页> 外文期刊>Journal of synchrotron radiation >Two-dimensional visible synchrotron light interferometry for transverse beam-profile measurement at the SPring-8 storage ring
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Two-dimensional visible synchrotron light interferometry for transverse beam-profile measurement at the SPring-8 storage ring

机译:二维可见同步辐射干涉仪,用于在SPring-8存储环上进行横向光束轮廓测量

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摘要

A two-dimensional visible synchrotron light interferometer has been developed to measure the transverse profile of an electron beam at the SPring-8 storage ring. The new interferometer enables the simultaneous measurement of beam sizes along the major and minor axes and the beam-tilt angle of an assumed elliptical Gaussian distribution. The principle of the interferometer is explained through basic formulae. To calibrate the point-spread function of the interferometer, a simple error model was assumed for disturbances in the amplitude and phase of the light; these disturbances were presumably caused by optical elements, such as mirrors and lenses. The experimental method to determine the parameters in the error model is shown. To verify the two-dimensional profiling capabilities of the interferometer, an electron beam stored in the SPring-8 storage ring operated at various working points was observed. A beam broadening from 20 to 120 mum in the vertical direction and changes in the beam-tilt angle were clearly observed at working points close to the differential resonance. However, the vertical spatial resolution is limited by the available vertical separation of the apertures of the diffracting mask because of the narrow aperture of the upstream vacuum duct. [References: 12]
机译:已经开发出二维可见同步加速器光干涉仪,以测量SPring-8存储环处电子束的横向轮廓。新的干涉仪可以同时测量主轴和短轴上的光束大小以及假定的椭圆高斯分布的光束倾斜角。干涉仪的原理通过基本公式解释。为了校准干涉仪的点扩展功能,假设了一个简单的误差模型,用于对光的幅度和相位进行干扰。这些干扰大概是由光学元件引起的,例如镜子和透镜。显示了确定误差模型中参数的实验方法。为了验证干涉仪的二维轮廓分析功能,观察了在不同工作点工作的SPring-8存储环中存储的电子束。在接近微分共振的工作点,可以清楚地观察到光束在垂直方向上从20微米变宽到120微米,并且光束倾斜角发生了变化。然而,由于上游真空导管的狭窄孔,垂直空间分辨率受到衍射掩模的孔的可用垂直间隔的限制。 [参考:12]

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