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A Novel Nanowire Metal Converter for Improvement the Efficiency of the Gas-filled Radiation Detectors

机译:新型纳米线金属转换器,可提高充气辐射探测器的效率

摘要

Metal nanowires, due to their special physical properties and also high surface to volume ratio, can have considerable applications in designing and development of novel nano devices. For the radiation shielding, higher absorption coefficient of nano structures in comparison to bulk ones is an advantage. In gas detectors, designing a proper converter with higher efficiency which absorbs higher energy of gammaudand X-rays and convert it to free electrons is one of the major requirements. Since the nano wires have higher surface to volume ratio in comparison to the bulk ones, so it is expected that with the same thickness, the generated electrons have higher chance to escape from the surface. In this work, the random Copper nanowires with diameter of 40 nm are deposited on very thin glass slide. This nano structure with thickness of 30 μm is tested with X-rays energy between 12 to 22 keV. The results clearly show that thisudnano structure for the energy of 20 keV can release electrons three times more than the bulk ones. This novel nanoconverter with higher quantum efficiency can have many applications in high energy physics, medical imaging, and astronomy.
机译:金属纳米线由于其特殊的物理特性以及较高的表面积与体积之比,在新型纳米器件的设计和开发中具有重要的应用。对于辐射屏蔽,与整体结构相比,纳米结构的吸收系数更高是一个优势。在气体探测器中,设计合适的具有更高效率的转换器,以吸收更高的伽马射线和X射线能量并将其转换为自由电子是主要要求之一。由于纳米线与块状线相比具有更高的表面积与体积比,因此可以预期,在相同的厚度下,生成的电子有更高的机会从表面逸出。在这项工作中,直径为40 nm的无规铜纳米线沉积在非常薄的载玻片上。使用12至22 keV之间的X射线能量测试了厚度为30μm的纳米结构。结果清楚地表明,对于20 keV的能量,这种 udnano结构可以释放电子,是体电子的三倍。这种具有更高量子效率的新型纳米转换器可以在高能物理,医学成像和天文学中具有许多应用。

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