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Nanodiamond-polymer composite gratings as diffractive optical elements for light and neutrons: I. Their fabrication and light optical diffraction properties

机译:纳米金刚石-聚合物复合光栅作为光和中子衍射光学元件:I.它们的制造和光光学衍射特性

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We demonstrate for the first time the use of nanodiamond in constructing holographic nanoparticle-polymer composite transmission gratings with large saturated refractive index modulation amplitudes at both optical and slow-neutron wavelengths, resulting in efficient control of light and slow-neutron beams. This is so because nanodiamond possesses a high refractive index at optical wavelengths and large coherent and small incoherent scattering cross sections with low absorption at slow-neutron wavelengths. In the first part of the work we describe the synthesis of nanodiamond. the preparation of photopolymerizable nanodiamond-polymer composite films, the construction of transmission gratings in nanodiamond-polymer composite films and light optical diffraction experiments. Experiments of slow-neutron diffraction from such gratings will be described in the second part.
机译:我们首次证明了纳米金刚石在构建全息纳米粒子-聚合物复合透射光栅中的应用,该全息光栅在光学和慢中子波长均具有大的饱和折射率调制幅度,从而有效地控制了光和慢中子束。之所以如此,是因为纳米金刚石在光波长处具有高折射率,并且在慢中子波长处具有低吸收率,而具有大的相干和小的非相干散射截面。在工作的第一部分中,我们描述了纳米金刚石的合成。制备可光聚合的纳米金刚石-聚合物复合薄膜,制备纳米金刚石-聚合物复合薄膜的透射光栅,并进行光衍射实验。在第二部分中将描述从此类光栅进行慢中子衍射的实验。

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