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Two dimensional photonic crystal waveguides with multiple sharp bends

机译:具有多个尖锐弯曲的二维光子晶体波导

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We emphasize the importance of optical confinement in the vertical direction for a successful two-dimensional photonic crystal waveguide (2D-PCW) performance by presenting optical properties of a 2D-PCW that has a special feature to provide a strong vertical confinement. The 2D-PCW, which was designed to operate in microwave regime, was composed of two parts: an ordinary 2D-PCW composed of alumina rods in air for lateral optical confinement and a pair of aluminum metal plates forming a metal waveguide in the vertical direction. Cylindrical alumina rods, each being 2 mm in diameter, were arranged in a square-lattice with its spatial period of 9 mm, which according to a simple photonic band calculation produces a photonic bandgap in the frequency range of 14.7~16.5 GHz for TM-polarized light (E-field parallel to the rods). This 2D-PCW was then embedded between two aluminum metal plates. Light propagation loss for a straight waveguide, which was estimated from transmission measurement as a function of waveguide length, is as low as 0.05 dB/cm whereas most of transmission loss could be attributed to the input and output couplings due to mode mismatch. When multiple 90°-bends were incorporated, on the other hand, estimated bending loss was only 0.1 dB/bend, which indicates that high performance 2D-PCWs are indeed possible if an appropriate strong confinement in the vertical direction is provided. Fabry-Perot oscillations seen in transmission spectra, whose oscillation period was observed dictated only by total waveguide length regardless of the number of bends, are another strong evidence for the low propagation and bending losses of our waveguide structure.
机译:我们通过呈现具有特殊特征的2D-PCW的光学特性来强调用于成功的二维光子晶体波导(2D-PCW)性能的垂直方向上的光学限制的重要性。设计用于在微波制度中操作的2D-PCW由两部分组成:普通的2D-PCW由空气中的氧化铝棒组成,用于横向光学限制和在垂直方向上形成金属波导的一对铝金属板。圆柱形氧化铝棒,每个直径为2mm,在一个方形晶格中布置,其空间周期为9mm,其根据简单的光子带计算,在14.7〜16.5GHz的频率范围内产生光子带隙。偏振光(平行于杆的E场)。然后将该2D-PCW嵌入两个铝金属板之间。从透射测量作为波导长度的函数估计的直波布导的光传播损耗低至0.05dB / cm,而大多数传输损耗可能归因于由于模式不匹配而导致的输入和输出耦合。另一方面,当掺入多个90°的弯曲时,估计的弯曲损耗仅为0.1dB /弯曲,表示提供高性能2d-PCW,如果提供了垂直方向上的适当强度限制。在透射光谱中看到的法布里 - 珀罗振动,观察到其振荡周期仅被总波导长度所示,无论弯曲的数量如何,都是我们波导结构的低传播和弯曲损耗的另一个强大的证据。

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