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高能第四代 X 射线同步辐射光源的相干性特性。

Coherence properties of the high-energy fourth-generation X-ray synchrotron sources.

机构信息

Deutsches Electronen-Synchrotron DESY, Notkestrasse 85, D-22607 Hamburg, Germany.

National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Kashirskoe shosse 31, Moscow 115409, Russian Federation.

出版信息

J Synchrotron Radiat. 2019 Nov 1;26(Pt 6):1851-1862. doi: 10.1107/S1600577519013079.

Abstract

An analysis of the coherence properties of the fourth-generation high-energy storage rings with emittance values of 10 pm rad is performed. It is presently expected that a storage ring with these low emittance values will reach diffraction limit at hard X-rays. Simulations of coherence properties were performed with the XRT software and an analytical approach for different photon energies from 500 eV to 50 keV. It was demonstrated that a minimum photon emittance (diffraction limit) reached at such storage rings is λ/2π. Using mode decomposition it is shown that, for the parameters of the storage ring considered in this work, the diffraction limit will be reached for soft X-ray energies of 500 eV. About ten modes will contribute to the radiation field at 12 keV photon energy and even more modes give a contribution at higher photon energies. Energy spread effects of the electron beam in a low-emittance storage ring were analysed in detail. Simulations were performed at different relative energy spread values from zero to 2 × 10. A decrease of the degree of coherence with an increase of the relative energy spread value was observed. This analysis shows that, to reach the diffraction limit for high photon energies, electron beam emittance should go down to 1 pm rad and below.

摘要

对第四代高能存储环的相干性进行了分析,其发射度值为 10 pm rad。目前预计,这种低发射度值的存储环将在硬 X 射线达到衍射极限。使用 XRT 软件和不同光子能量(从 500 eV 到 50 keV)的分析方法对相干性进行了模拟。结果表明,在这种存储环中达到的最小光子发射度(衍射极限)为 λ/2π。使用模式分解表明,对于本文中考虑的存储环的参数,对于 500 eV 的软 X 射线能量将达到衍射极限。在 12 keV 光子能量下,大约十个模式将对辐射场做出贡献,而在更高的光子能量下,更多的模式会做出贡献。详细分析了低发射度存储环中电子束的能散效应。在从 0 到 2×10 的不同相对能散值下进行了模拟。随着相对能散值的增加,相干度降低。该分析表明,为了在高光子能量下达到衍射极限,电子束发射度应降至 1 pm rad 及以下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/913b/6853378/19617b65865b/s-26-01851-fig1.jpg

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