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用于电子动量密度研究的高能非弹性散射束线。

High-energy inelastic-scattering beamline for electron momentum density study.

作者信息

Sakurai Y

机构信息

The Institute of Physical and Chemical Research (RIKEN), SPring-8, Kamigori, Ako-gun, Hyogo 678-12, Japan.

出版信息

J Synchrotron Radiat. 1998 May 1;5(Pt 3):208-14. doi: 10.1107/S0909049598002052.

Abstract

The advent of synchrotron radiation sources for well polarized and high-energy X-rays offers new opportunities for exploiting Compton scattering spectroscopy as a tool for investigating the electronic and magnetic structures of materials. Recent high-resolution Compton scattering experiments show the unique capability for the study of Fermiology-related issues and electron-electron correlation effects. Intense, high-energy and circularly polarized X-ray sources have improved magnetic Compton scattering spectroscopy from the point of statistical accuracy and momentum resolution. As a next advance, a high-energy inelastic scattering beamline dedicated to Compton scattering spectroscopies is being constructed at SPring-8. The light source is an elliptic multipole wiggler with a periodic length of 12 cm. The beamline includes two experimental stations: one is for high-resolution spectroscopy using 100-150 keV X-rays and the other is for magnetic Compton scattering experiments using circularly polarized 300 keV X-rays. The use of such high-energy X-rays makes it possible to carry out experiments efficiently on samples including heavier elements, such as high-T(c) superconductors and 4f and 5f magnetic materials.

摘要

用于产生极化良好且能量较高的X射线的同步辐射源的出现,为利用康普顿散射光谱作为研究材料电子和磁结构的工具提供了新机遇。最近的高分辨率康普顿散射实验展示了其在研究费米学相关问题和电子-电子关联效应方面的独特能力。高强度、高能量且圆偏振的X射线源从统计精度和动量分辨率的角度改进了磁康普顿散射光谱。作为下一步进展,正在日本SPring-8建造一条专门用于康普顿散射光谱的高能非弹性散射束线。光源是一个周期长度为12厘米的椭圆多极摆动器。该束线包括两个实验站:一个用于使用100 - 150 keV X射线的高分辨率光谱,另一个用于使用圆偏振300 keV X射线的磁康普顿散射实验。使用这种高能X射线使得能够在包括重元素的样品上高效地开展实验,例如高温超导体以及4f和5f磁性材料。

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