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Generation of phonons from electrostriction in small-core optical waveguides

机译:小芯光波导中电致伸缩产生声子

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We investigate the generation of acoustic phonons from electrostriction of optical waves in small core waveguides. We specifically consider simple step-index strip waveguides composed of silica or silicon in air, with sub-micron lateral dimensions. Such waveguides support one or a few optical modes, but a rich spectrum of acoustic phonons that becomes densely populated as the phonon frequency increases. We evaluate rigorously the phonon energy density that results from the electrostriction of two frequency detuned guided optical waves, that are either co- or contra-propagating, including phonon loss. Plotting this energy density as a function of frequency detuning reveals the phonon wave packets that are electrostrictively active and gives a quantitative estimation of the energy transfer from optical waves to particular phonons. Furthermore, in the backward interaction geometry, the dispersion relation of such phonons can be accessed directly by varying the optical wavelength.
机译:我们研究了小型纤芯波导中光波的电致伸缩所产生的声子。我们特别考虑了由空气中的二氧化硅或硅组成的,具有亚微米横向尺寸的简单的分步折射率带状波导。这样的波导支持一种或几种光学模式,但是随着声子频率的增加,丰富的声子光谱会变得密集。我们严格评估声频能量密度,该声子能量密度是由两个频率失谐的导光波的电致伸缩所产生的,这两种声波是共传播或对传播的,包括声子损耗。将该能量密度绘制为频率失谐的函数,可以发现声电波束具有电致伸缩作用,并且可以定量估计从光波到特定声子的能量转移。此外,在向后相互作用的几何形状中,可以通过改变光波长直接访问这种声子的色散关系。

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