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Germanium-based Nanophotonic Devices: Two-dimensional Photonic Crystals And Cavities

机译:锗基纳米光子器件:二维光子晶体和腔

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Two-dimensional photonic crystals are promising structures for photonic applications. Here, we show that the optical properties of two-dimensional photonic crystal membranes fabricated from silicon-on-insulator substrates can be probed at room temperature by the internal continuous wave photoluminescence of Ge/Si self-assembled islands. Quality factors up to 15 000, limited by the spectrometer resolution, are measured. We also show that two-dimensional photonic crystals can be fabricated as well with germanium-on-insulator substrates by using the same processing techniques. The optical properties of these two-dimensional photonic crystals can be probed by the room-temperature photoluminescence associated with the direct band gap of the bulk Ge layer. Enhanced resonant extraction efficiency can be obtained for wavelengths longer than 1.55 urn. The quality factors of HI hexagonal cavities are found in good agreement with those obtained by finite-difference time domain calculations.
机译:二维光子晶体是用于光子应用的有前途的结构。在这里,我们表明,绝缘体上硅衬底制成的二维光子晶体膜的光学特性可以在室温下通过Ge / Si自组装岛的内部连续波光致发光来探测。可以测量高达15000的质量因数,受光谱仪分辨率限制。我们还表明,通过使用相同的处理技术,也可以用绝缘体上锗衬底制造二维光子晶体。这些二维光子晶体的光学性质可以通过与体Ge层的直接带隙相关联的室温光致发光来探测。对于波长大于1.55 um的波长,可以获得更高的共振提取效率。 HI六角形腔的品质因数与通过时域有限差分计算获得的品质因数非常吻合。

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