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CONTROL OF X-RAY HAZARD IN FEMTOSECOND ELECTRON DIFFRACTOMETER

机译:对飞秒电子衍射仪X射线危险的控制

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In a femtosecond electron diffractometer (FED) electrons are generated by a 266 nm laser beam with 8 μJ/pulse by hitting a gold-coated quartz disc (photocathode). The electrons are accelerated in an electric field up to 300 keV. 1 mm thick Silicon disk with a 400 μm hole is used as anode and also for collimation of the electron beam. The electrons passing through the hole will hit the sample and create the diffraction pattern. Due to the high voltage, a considerable amount of X-rays are produced inside the vacuum chamber of the diffractometer. The steel walls and the glass windows do not offer enough shielding to reduce the dose rate around the instrument to acceptable levels. In this paper we will present the engineering and administrative controls put in place to control the X-ray hazard and to comply with the requirements of the Ontario Ministry of Labour.
机译:在飞秒电子衍射仪(FED)中,通过撞击镀金石英盘(光阴极),通过具有8μJ/脉冲的266nm激光束产生。电子在电场上加速到高达300keV的电场。使用400μm孔的1mm厚的硅盘用作阳极,也用于电子束的准直。穿过孔的电子将击中样品并产生衍射图案。由于高电压,在衍射仪的真空室内产生了大量的X射线。钢墙和玻璃窗不提供足够的屏蔽,以将仪器周围的剂量率降低到可接受的水平。在本文中,我们将提出制定的工程和行政控制,以控制X射线危险,并遵守安大略省劳工部的要求。

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