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Si-based two-dimensional photonic crystals coupled to one-dimensional Bragg mirrors

机译:硅基二维光子晶体与一维布拉格镜耦合

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Planar two-dimensional photonic crystals can be combined with a one-dimensional Bragg mirror to control the quality factor and out-of-plane coupling of optical Bloch modes. We have investigated the optical properties of such structures fabricated on silicon. The photonic crystals are fabricated in the upper Si layer deposited on top of quarter-wave thick SiO2-polycrystalline Si layers. The optical properties are probed by the room-temperature photoluminescence of Ge/Si self-assembled islands as an internal source. We show that an enhancement of the quality factor can be obtained by controlling the thickness of the silicon upper layer in which the two-dimensional photonic crystal is etched and by controlling the air filling factor of the photonic crystal. Quality factors of 2200 around 1100 nm are obtained by this method for defect-free photonic crystals with a square lattice pattern. The experimental results are supported by three-dimensional finite-difference time-domain (FDTD) calculations of the radiated modes for the investigated structures. (c) 2006 Elsevier B.V. All rights reserved.
机译:平面二维光子晶体可以与一维布拉格镜结合使用,以控制光学Bloch模式的品质因数和平面外耦合。我们已经研究了在硅上制造的这种结构的光学特性。在沉积在四分之一波长厚的SiO2-多晶Si层顶部的上层Si层中制造光子晶体。通过Ge / Si自组装岛的室温光致发光作为内部光源来探测其光学特性。我们表明,通过控制在其中蚀刻了二维光子晶体的硅上层的厚度以及通过控制光子晶体的空气填充因子,可以提高品质因数。通过这种方法,对于具有方格子图案的无缺陷光子晶体,可获得约2200的质量因数,约为1100 nm。实验结果得到所研究结构的辐射模式的三维有限差分时域(FDTD)计算的支持。 (c)2006 Elsevier B.V.保留所有权利。

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