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在电子储存环BESSY I上对电子能量和能量展宽的测量。

Measurement of the electron energy and energy spread at the electron storage ring BESSY I.

作者信息

Klein R, Mayer T, Kuske P, Thornagel R, Ulm G

机构信息

Physikalisch-Technische Bundesanstalt, Abbestr. 2-12, D-10587 Berlin, Germany.

出版信息

J Synchrotron Radiat. 1998 May 1;5(Pt 3):392-4. doi: 10.1107/S090904959701532X.

Abstract

Knowledge of the electron energy with a small uncertainty is necessary for the Physikalisch-Technische Bundesanstalt (PTB) to operate the electron storage ring BESSY I, and the future BESSY II, as a primary radiation source standard of calculable synchrotron radiation. At BESSY I the electron energy can now be measured either by the long-established method of resonant spin depolarization or by the newly set up method of Compton backscattering (CBS) of laser photons (CO(2) laser, lambda = 10.6 micro m). Results obtained at different electron energies by these two independent methods are presented. They agree within a relative uncertainty of better than 10(-4). The advantages and disadvantages of these two complementary techniques are described and applications of CBS for the measurement of other storage-ring parameters, e.g. the electron energy spread, are given.

摘要

对于德国物理技术联邦研究院(PTB)而言,以小不确定度知晓电子能量是将电子储存环BESSY I以及未来的BESSY II作为可计算同步辐射的主要辐射源标准来运行所必需的。在BESSY I,目前电子能量既可以通过长期使用的共振自旋去极化方法来测量,也可以通过新建立的激光光子(CO(2)激光,波长λ = 10.6μm)康普顿背散射(CBS)方法来测量。本文给出了通过这两种独立方法在不同电子能量下获得的结果。它们在相对不确定度优于10^(-4)的范围内相符。描述了这两种互补技术的优缺点,并给出了CBS在测量其他储存环参数(例如电子能量展宽)方面的应用。

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