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From single photons to milliwatt radiant power--electron storage rings as radiation sources with a high dynamic range

机译:从单光子到毫瓦辐射功率-电子存储环作为具有高动态范围的辐射源

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摘要

The spectral radiant intensity of synchrotron radiation from electron storage rings can be calculated from basic electrodynamic relations (Schwinger equation) and it is directly proportional to the stored electron beam current, i.e. the number of stored electrons. With the necessary equipment installed to measure and control the electron beam current over a wide dynamic range, the radiant intensity of the synchrotron radiation can be adjusted accordingly without changing the spectrum. This is done, e.g., at the Metrology Light Source (MLS), the dedicated electron storage ring of the Physikalisch-Technische Bundesanstalt. The MLS is operated as a primary radiation source standard from the near IR up to the soft x-ray region and its operational parameters can be adjusted and accurately measured in a wide range: the electron beam current can be varied from 1 pA (one stored electron) up to 200 mA and thus the radiant intensity can be changed by more than 11 decades. The photon flux or radiant power for typical angular acceptances can thus be varied from single photons to milliwatts. This is a very powerful tool, e.g., for the characterization of the linearity of the response of radiation detectors or for the calibration of photon counting detectors. In this article we present an overview of past, current and possible future activities exploiting this feature.
机译:来自电子存储环的同步加速器辐射的光谱辐射强度可以根据基本的电动关系(Schwinger方程)计算,并且与存储的电子束电流即存储的电子数成正比。通过安装必要的设备以在较大的动态范围内测量和控制电子束电流,可以在不改变光谱的情况下相应地调整同步加速器辐射的辐射强度。例如,在Physikalisch-Technische Bundesanstalt的专用电子存储环Metrology Light Source(MLS)上完成此操作。 MLS是从近红外到软X射线区域的主要辐射源标准,其工作参数可以在很宽的范围内进行调整和精确测量:电子束电流可以从1 pA变化(存储一个电子)高达200 mA的电流,因此辐射强度可以改变超过11年。因此,典型角度接受的光子通量或辐射功率可以从单个光子变化到毫瓦。这是非常强大的工具,例如,用于表征辐射探测器响应的线性或用于校准光子计数探测器。在本文中,我们概述了利用此功能的过去,当前和将来可能发生的活动。

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