Hong-Ou-Mandel quantum effect on rubber-cnt composites

L. Karachevtseva, V. Trachevskiy, O. Lytvynenko, M. Kartel
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Abstract

We investigated influence of multiwalled carbon nanotubes (CNT) on spectral characteristics of composites “rubber-carbon nanotubes”on the base of butadiene-nitrile rubber at 0–10 % of CNTs. IR reflectance maxima of composites were measured in the spectral area of the rubber CH deformation and valence vibrations. IR absorption spectra of composites “rubber-carbon nanotubes” after vulcanization includes some giant two-polar oscillations. IR absorption spectrum of composites “rubber-carbon nanotubes” at 1 % of CNTs without vulcanization includes the alone two-polar oscillation. Two-photon interference is a result of quantum entanglement of dipole-active vibrations and photon splitting according to Hong-Ou-Mandel (HOM) quantum effect. Two-photon maximal entanglement saturation is called as Bell states. HOM quantum effect is perspective for high-coherent optical quantum computers on composites “rubber-carbon nanotubes”.
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橡胶-碳纳米管复合材料的Hong-Ou-Mandel量子效应
研究了在0 - 10%碳纳米管用量下,丁腈橡胶基多壁碳纳米管(CNT)对橡胶-碳纳米管复合材料光谱特性的影响。在橡胶CH变形和价态振动的光谱区测量了复合材料的最大红外反射率。橡胶-碳纳米管复合材料硫化后的红外吸收光谱存在较大的两极性振荡。未硫化的“橡胶-碳纳米管”复合材料在1%碳纳米管时的红外吸收光谱仅包含两极性振荡。根据Hong-Ou-Mandel (HOM)量子效应,双光子干涉是偶极主动振动的量子纠缠和光子分裂的结果。双光子最大纠缠饱和称为贝尔态。HOM量子效应是“橡胶-碳纳米管”复合材料上高相干光量子计算机的前景。
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