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The Southwest Research Institute ultraviolet reflectance chamber (SwURC): a far ultraviolet reflectometer

机译:西南研究所紫外线反射室(SwURC):远紫外线反射仪

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We designed and assembled a highly capable UV reflectometer chamber and data acquisition system to provide bidirectional scattering data of various surfaces and materials. This chamber was initially conceived to create laboratory-based UV reflectance measurements of water frost on lunar soil/regolith simulants, to support interpretation of UV reflectance data from the Lyman Alpha Mapping Project (“LAMP”) instrument on-board the NASA Lunar Reconnaissance Orbiter spacecraft. A deuterium lamp illuminates surfaces and materials at a fixed 45° incident beam angle over the 115 to 200 nm range via a monochromator, while a photomultiplier tube detector is scanned to cover emission angles -85° to +85° (with a gap from -60° to -30°, due to the detector blocking the incident beam). Liquid nitrogen cools the material/sample mount when desired. The chamber can be configured to test a wide range of samples and materials using sample trays and holders. Test surfaces to date include aluminum mirrors, water ice, reflectance standards, and frozen mixtures of water and lunar soil/regolith stimulant. Future UV measurements planned include Apollo lunar samples, meteorite samples, other ices, minerals, and optical surfaces. Since this chamber may well be able to provide useful research data for groups outside Southwest Research Institute, we plan to take requests from and collaborate with others in the UV and surface reflection research community.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:我们设计并组装了功能强大的紫外线反射计室和数据采集系统,以提供各种表面和材料的双向散射数据。最初设计该腔室是为了对月球土壤/沙石模拟物上的水霜进行基于实验室的UV反射率测量,以支持NASA月球勘测轨道飞行器上的莱曼阿尔法测绘项目(“ LAMP”)仪器对UV反射率数据的解释。飞船。氘灯通过单色仪以115°至200 nm范围内固定的45°入射光束角照亮表面和材料,同时扫描光电倍增管检测器以覆盖-85°至+ 85°的发射角(间隙为-由于检测器阻挡了入射光束,因此角度在60°至-30°之间。必要时,液氮可冷却材料/样品架。该腔室可配置为使用样品盘和样品架测试各种样品和材料。迄今为止,测试表面包括铝镜,水冰,反射率标准,以及水和月球土壤/重水石刺激物的冷冻混合物。计划中的未来紫外线测量包括阿波罗登月样品,陨石样品,其他冰,矿物和光学表面。由于该研究室很可能能够为西南研究所以外的研究小组提供有用的研究数据,因此,我们计划接受来自紫外线和表面反射研究界的要求并与他人合作。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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