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Synchrotron Radiation Center (SRC)

Synchrotron Radiation Center (SRC)
同步辐射中心 (SRC)
批准号:
9212658
负责人:
金额:
$1540.0万
依托单位国家:
美国
项目类别:
Cooperative Agreement
财政年份:
1993
资助国家:
美国
项目状态:
已结题
起止时间:
1993-10-01 至 1997-03-31

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中文摘要
翻译
同步辐射中心(SRC)由 威斯康星大学麦迪逊分校,是一个国家设施 用于利用紫外线和软X射线 科学研究中的同步辐射。 的 在SRC进行的研究影响了凝聚态物质 物理、原子和分子物理、化学、 材料科学与工程、生物学及其他 学科 SRC是一个面向用户的设施, 接受所有合格研究者的建议。 在 目前,300多人组成了75个团体, 对26条正在运行的光束线进行研究, SRC。 在这些群体中,69%来自大学,19%来自 来自国家实验室,12%来自工业实验室, 附属机构。 SRC业务包括9个公共 光束线,16个参与研究团队(PRT) 束线,一个联合SRC/PRT束线,和三个 正在开发中的光束线。 十八条经营线 有单色器。 它们涵盖了光子能量范围 从几eV到几keV。 SRC在两个 电子能量:800 MeV和1 GeV。 一个干净的房间, 为用户保留了一个化学品处理室。 几个独特的光束线,包括五个 由X射线光刻中心操作的光束线, 为高分辨率光电发射而开发的光束线 利用波荡器的X射线显微术(多个 应用X射线成像波动器显微镜-最大), 高分辨光电子能谱束线 正在开发的费米能带结构测量- 高温超导材料的表面轮廓, 高精度软X射线双晶单色仪 光束线,其在1500-3700范围内提供可调谐光束 扩展X射线吸收精细结构的Ev范围 EXAFS研究。
英文摘要
The Synchrotron Radiation Center (SRC) operated by the University of Wisconsin-Madison, is a national facility for the utilization of ultra-violet and soft x-ray synchrotron radiation in scientific investigations. The studies carried out at the SRC impact condensed matter physics, atomic and molecular physics, chemistry, materials science and engineering, biology, and other disciplines. The SRC is a user oriented facility which accepts proposals from all qualified investigators. At present, more than 300 individuals make up 75 groups which conduct research on the 26 operating beamlines at the SRC. Of these groups, 69% are from universities, 19% are from national laboratories, and 12% are industrial affiliates. The SRC operation includes nine public beamlines, sixteen Participating Research Team (PRT) beamlines, one joint SRC/PRT beam line, and three beamlines under development. Eighteen operating lines have monochromators. They cover the photon energy range from a few eV to several keV. The SRC operates at two electron energies: 800 MeV and 1 GeV. A clean room and a chemical handling room are maintained for users. Several unique beamlines are available including five beamlines operated by the Center for X-ray Lithography, a beam line developed for high resolution photoemission x-ray microscopy utilizing an undulator (Multiple Application X-ray Imaging Undulator Microscope-MAXIMUM), a high resolution photoelectron spectroscopy beam line being developed for band-structure measurements of Fermi- surface contours in high-Tc superconducting materials, a high precision soft x-ray double-crystal monochromator beam line which provides a tunable beam in the 1500-3700 Ev range for Extended X-ray Absorption Fine Structure studies (EXAFS).
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