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首页> 外文期刊>Nuclear instruments and methods in physics research >Novel optical interferometry of synchrotron radiation for absolute electron beam energy measurements
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Novel optical interferometry of synchrotron radiation for absolute electron beam energy measurements

机译:用于绝对电子束能量测量的新型同步辐射辐射光学干涉仪

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摘要

A novel interferometric method is presented for the measurement of the absolute energy of electron beams. In the year 2016, a pioneering experiment was performed using a 195 MeV beam of the Mainz Microtron (MAMI). The experimental setup consisted of two collinear magnetic undulators as sources of coherent optical synchrotron light and a high-resolving grating monochromator. Beam energy measurements required the variation of the relative undulator distance in the decimeter range and the analysis of the intensity oscillation length in the interference spectrum. A statistical precision of 1 keV was achieved in 1 h of data taking, while systematic uncertainties of 700 keV were present in the experiment. These developments aim for a relative precision of 10(-5) in the absolute momentum calibrations of spectrometers and high-precision hypernuclear experiments. Other electron accelerators with beam energies in this regime such as the Mainz Energy Recovering Superconducting Accelerator (MESA) might benefit from this new method.
机译:提出了一种新颖的干涉测量方法,用于测量电子束的绝对能量。在2016年,使用美因茨Microtron(MAMI)的195 MeV光束进行了开创性实验。实验装置由两个共线电磁波荡器和一个高分辨光栅单色仪组成,这两个波荡器作为相干光同步加速器光源。束能量测量需要在分米范围内改变相对起伏器距离,并需要分析干涉光谱中的强度振荡长度。在1小时的数据采集中,统计精度达到1 keV,而实验中存在700 keV的系统不确定性。这些发展旨在使光谱仪和高精度超核实验的绝对动量校准中的相对精度达到10(-5)。在这种情况下具有束能量的其他电子加速器,例如美因茨能量回收超导加速器(MESA),可能会受益于这种新方法。

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