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首页> 外文期刊>Applied optics >Features of the non-collinear one-phonon anomalous light scattering controlled by elastic waves with elevated linear losses: potentials for multi-frequency parallel spectrum analysis of radio-wave signals
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Features of the non-collinear one-phonon anomalous light scattering controlled by elastic waves with elevated linear losses: potentials for multi-frequency parallel spectrum analysis of radio-wave signals

机译:由具有升高线性损耗的弹性波控制的非共线单声道异常光散射的特征:无线电波信号多频并行频谱分析的电位

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During subsequent development of the recently proposed multi-frequency parallel spectrometer for precise spectrum analysis of wideband radio-wave signals, we study potentials of new acousto-optical cells exploiting selected crystalline materials at the limits of their capabilities. Characterizing these wide-aperture cells is non-trivial due to new features inherent in the chosen regime of an advanced non-collinear one-phonon anomalous light scattering by elastic waves with significantly elevated acoustic losses. These features can be observed simpler in uniaxial, tetragonal, and trigonal crystals possessing linear acoustic attenuation. We demonstrate that formerly studied additional degree of freedom, revealed initially for multi-phonon regimes of acousto-optical interaction, can be identified within the one-phonon geometry as well and exploited for designing new cells. We clarify the role of varying the central acoustic frequency and acoustic attenuation using the identified degree of freedom. Therewith, we are strongly restricted by a linear regime of acousto-optical interaction to avoid the origin of multi-phonon processes within carrying out a multi-frequency parallel spectrum analysis of radio-wave signals. Proof-of-principle experiments confirm the developed approaches and illustrate their applicability to innovative technique for an advanced spectrum analysis of wideband radio-wave signals with the improved resolution in an extended frequency range. (C) 2017 Optical Society of America.
机译:在最近提出的多频率光谱仪的后续开发期间,用于宽带无线电波信号的精确频谱分析,我们研究新的声光细胞在其能力限制下利用所选晶体材料的新散声电池。特征在于这些宽孔径电池是非琐碎的,由于通过弹性波的高级非共线单声道异常光散射具有显着升高的声损失的弹性波的所选的非共线单声道异常光散射的新特征是非琐碎的。这些特征可以在具有线性声学衰减的单轴,四方和三角形和三角形晶体中观察到更简单。我们证明以前研究了额外的自由度,最初揭示了声子 - 光学相互作用的多声位制度,也可以在单声道几何形状内识别并剥削用于设计新细胞。我们阐明了使用所识别的自由度来改变中央声学频率和声学衰减的作用。因此,我们受到声学 - 光学相互作用的线性制度的强制性限制,以避免在执行无线电波信号的多频并行频谱分析中的多声子过程的起源。原则上的实验证实了开发的方法,并说明了它们对创新技术的适用性,以在扩展频率范围内具有改进的分辨率的宽带无线电波信号的高级频谱分析。 (c)2017年美国光学学会。

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