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首页> 外文期刊>Optoelectronics, Instrumentation and Data Processing >Mechanophysical Methods for Producing Optical Nanoceramics Based on Magnetic Semiconductors
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Mechanophysical Methods for Producing Optical Nanoceramics Based on Magnetic Semiconductors

机译:基于磁半导体的光学纳米陶瓷生产机械物理方法

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This paper considers mechanophysical methods (shear under pressure and explosive loading) developed for producing high-density optical nanoceramics based on some oxide magnetic semiconductors and their optical properties. Advantages of these methods are the simplicity of implementation, a combination of nano-grinding and compaction of material in a single process, obtaining high-density (similar to 99%) stable materials, and the absence of external impurity. It is shown that copper oxide nanoceramics can be used as solar energy absorbers and iron-yttrium garnet nanoceramics as an optical element in electromagnetic radiation modulators.
机译:本文考虑了基于一些氧化物磁半导体及其光学性能的高密度光学纳米陶瓷制造的机械物理方法(剪切压力和爆炸负载)。 这些方法的优点是实施的简单性,在单个过程中的纳米研磨和压实材料的组合,获得高密度(类似于99%)稳定的材料,并且没有外部杂质。 结果表明,氧化铜纳米陶瓷可用作太阳能吸收剂和铁钇石榴石纳米陶瓷,作为电磁辐射调制器中的光学元件。

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