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约束行走模式的椭圆偏振波荡器及其应用。

Confined-walking mode for an elliptical polarized undulator and its application.

机构信息

Shanghai Synchrotron Radiation Facility (SSRF), Shanghai Advanced Research Institute (SARI), Chinese Academy of Sciences, 239 Zhangheng Road, Pudong District, Shanghai 201210, People's Republic of China.

Shanghai Xiangou Automation System CO, 988 Datong Road B-2003, Zhabei District, Shanghai 200070, People's Republic of China.

出版信息

J Synchrotron Radiat. 2019 Nov 1;26(Pt 6):1911-1916. doi: 10.1107/S1600577519013286. Epub 2019 Oct 23.

Abstract

Elliptical polarized undulators (EPUs) are broadly used in the soft X-ray energy range. They have the advantage of providing photons with both varied energy and polarization through adjustments to the value of the gap and/or shift magnet arrays in an undulator. Yet these adjustments may create a disturbance on the stability of the electron beam in a storage ring. To correct such a disturbance, it is necessary to establish a feed-forward table of key nodes in the gap-shift-defined two-dimensional parameter space. Such a table can only be scanned during machine-study time. For a free-walking mode, whereby an undulator is allowed to manoeuvre in the whole gap-shift space, all the key nodes need to be scanned at the expense of a large amount of machine-study time. This will greatly delay the employment of a full-polarization capable undulator (especially circularly polarized). By analyzing data-collecting patterns of user experiments, this paper defines a reduced set of key nodes in gap-shift parameter space, with the number of key nodes to be scanned for feed-forwarding scaled down to one-third of the original; and introduces a new walking mode for EPUs: confined-walking mode, whereby the undulator is manoeuvred only within the reduced set of key nodes. Such a mode is firstly realized on the EPUs at the DREAMLINE beamline at Shanghai Synchrotron Radiation Facility (SSRF). Under confined-walking mode, the undulator movements are stable and there is no obvious disturbance to the electron beam with the feed-forward system in operation. Successful experiments have been carried out using the circularly polarized light obtained via the new walking mode. This mode is expected to be applied to future EPUs at SSRF with the increasing requirements for various polarization modes.

摘要

椭圆偏振波荡器(EPUs)在软 X 射线能区得到广泛应用。通过调整波荡器的间隙和/或偏移磁铁阵列的数值,它们可以提供具有不同能量和偏振的光子。然而,这些调整可能会对储存环中电子束的稳定性造成干扰。为了纠正这种干扰,需要在间隙-偏移二维参数空间中建立关键节点的前馈表。该表只能在机器研究时间内扫描。对于自由行走模式,允许波荡器在整个间隙-偏移空间中运动,需要扫描所有关键节点,这会消耗大量的机器研究时间。这将极大地延迟全极化能力的波荡器(特别是圆偏振)的应用。通过分析用户实验的数据收集模式,本文定义了间隙-偏移参数空间中的一组减少的关键节点,前馈的关键节点数量减少到原来的三分之一;并引入了一种新的 EPU 行走模式:限制行走模式,波荡器仅在减少的关键节点集中移动。这种模式首先在上海同步辐射装置(SSRF)的 DREAMLINE 光束线的 EPUs 上实现。在限制行走模式下,前馈系统运行时,波荡器的运动是稳定的,对电子束没有明显的干扰。已经使用通过新行走模式获得的圆偏振光成功进行了实验。随着对各种偏振模式的需求增加,这种模式有望应用于 SSRF 的未来 EPUs。

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