首页> 外文期刊>Journal of synchrotron radiation >Multi-use high/low-temperature and pressure compatible portable chamber for in situ grazing-incidence X-ray scattering studies
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Multi-use high/low-temperature and pressure compatible portable chamber for in situ grazing-incidence X-ray scattering studies

机译:多用途高温/低温和高压兼容便携式隔室,用于原位掠入射X射线散射研究

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摘要

The multipurpose portable ultra-high-vacuum-compatible chamber described in detail in this article has been designed to carry out grazing-incidence X-ray scattering techniques on the BM25-SpLine CRG beamline at the ESRF. The chamber has a cylindrical form, built on a 360° beryllium double-ended conflate flange (CF) nipple. The main advantage of this chamber design is the wide sample temperature range, which may be varied between 60 and 1000 K. Other advantages of using a cylinder are that the wall thickness is reduced to a minimum value, keeping maximal solid angle accessibility and keeping wall absorption of the incoming X-ray beam constant. The heat exchanger is a customized compact liquid-nitrogen (LN2) continuous-flow cryostat. LN2 is transferred from a storage Dewar through a vacuum-isolated transfer line to the heat exchanger. The sample is mounted on a molybdenum support on the heat exchanger, which is equipped with a BORALECTRIC heater element. The chamber versatility extends to the operating pressure, ranging from ultra-high vacuum (<10~(-10) mbar) to high pressure (up to 3 × 10~3 mbar). In addition, it is equipped with several CF ports to allocate auxiliary components such as capillary gas-inlet, viewports, leak valves, ion gun, turbo pump, etc., responding to a large variety of experiment requirements. A movable slits set-up has been foreseen to reduce the background and diffuse scattering produced at the beryllium wall. Diffraction data can be recorded either with a point detector or with a bi-dimensional CCD detector, or both detectors simultaneously. The system has been designed to carry out a multitude of experiments in a large variety of environments. The system feasibility is demonstrated by showing temperature-dependence grazing-incidence X-ray diffraction and conductivity measurements on a 20 nm-thick La0.7Ca0.3MnO3 thin film grown on a SrTiO3(001) substrate.
机译:本文详细描述的多功能便携式超高真空兼容腔室经过设计,可在ESRF上对BM25-SpLine CRG束线执行掠入射X射线散射技术。腔室为圆柱形,建立在360°铍双端接合法兰(CF)奶嘴上。这种腔室设计的主要优点是样品温度范围宽,可以在60至1000 K之间变化。使用量筒的其他优点是将壁厚减小到最小值,保持最大立体角可及性并保持壁厚吸收入射X射线束的常数。热交换器是定制的紧凑型液氮(LN2)连续流动低温恒温器。 LN2通过真空隔离的传输线从存储杜瓦瓶传输到热交换器。将样品安装在热交换器上的钼支架上,该钼支架上装有BORALECTRIC加热器元件。腔室的多功能性扩展到工作压力,范围从超高真空(<10〜(-10)mbar)到高压(高达3×10〜3 mbar)。此外,它配备了多个CF端口,可分配辅助组件,例如毛细管进气口,视口,泄漏阀,离子枪,涡轮泵等,以响应各种实验要求。可以预见的是,将设置一个可移动的缝隙,以减少背景和铍壁上产生的散射。可以使用点检测器或二维CCD检测器或同时使用两个检测器来记录衍射数据。该系统已被设计为在各种各样的环境中进行大量实验。通过显示在SrTiO3(001)衬底上生长的20 nm厚La0.7Ca0.3MnO3薄膜上的温度依赖性掠射入射X射线衍射和电导率测量值,证明了该系统的可行性。

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