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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Laser-heated diamond anvil cell at the advanced light source beamline 12.2.2
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Laser-heated diamond anvil cell at the advanced light source beamline 12.2.2

机译:先进光源光束线下的激光加热金刚石砧盒12.2.2

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摘要

The laser-heating system for the diamond anvil cell at endstation 2 of beamline 12.2.2 of the Advanced Light Source in Berkeley, CA, has been constructed and is available for in situ high-pressure high-temperature X-ray experiments. The endstation couples a high-brilliance synchrotron X-ray source with an industrial strength laser to heat and probe samples at high pressure in the diamond anvil cell. The system incorporates an 50 W Nd:YLF (cw) laser operated in TEM01~* mode. Double-sided heating is achieved by splitting the laser beam into two paths that are directed through the opposing diamond anvils. X-ray transparent mirrors steer the laser beams coaxial with the X-ray beam from the superconducting bending magnet (energy range 6-35 KeV) and direct the emitted light from the heated sample into two separate spectrometers for temperature measurement by spectroradiometry. Objective lenses focus the laser beam to a size of 25 μm diameter (FWHM) in the sample region. An X-ray spot size of 10 μm diameter (FWHM) has been achieved with the installation of a pair of focusing Kirkpatrick-Baez mirrors. A unique aperture configuration has produced an X-ray beam profile that has very low intensity in the tails. The main thrust of the program is aimed at producing in situ high-pressure high-temperature X-ray diffraction data, but other modes of operation, such as X-ray imaging have been accomplished. Technical details of the experimental setup will be presented along with initial results.
机译:位于加利福尼亚州伯克利的Advanced Light Source光束线12.2.2的终端站2处的金刚石砧座激光加热系统已经构建,可用于现场高压X射线实验。终端站将高亮度同步加速器X射线源与工业强度激光器耦合在一起,以加热和探测金刚石砧座单元中的高压样品。该系统包含以TEM01〜*模式运行的50 W Nd:YLF(cw)激光器。通过将激光束分成两条通过相对的金刚石砧座的路径来实现双面加热。 X射线透明镜引导来自超导弯曲磁体的X射线与激光束同轴(能量范围为6-35 KeV),并将加热后的样品发出的光引导到两个单独的光谱仪中,以通过分光光度法进行温度测量。物镜将激光束聚焦到样品区域中直径为25μm的尺寸(FWHM)。通过安装一对聚焦Kirkpatrick-Baez反射镜,可以实现直径为10μm的X射线光斑(FWHM)。独特的光圈配置产生了X射线束轮廓,其尾部的强度非常低。该程序的主要目的是在现场产生高压高温X射线衍射数据,但其他操作模式(例如X射线成像)也已实现。实验设置的技术细节将与初步结果一起介绍。

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