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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Broadband optical coupling between microstructured fibers and photonic band gap circuits: Two-dimensional paradigms
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Broadband optical coupling between microstructured fibers and photonic band gap circuits: Two-dimensional paradigms

机译:微结构化光纤与光子带隙电路之间的宽带光耦合:二维范式

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摘要

We demonstrate high efficiency, broadband coupling between photonic crystal waveguides and photonic crystal fibers (PCFs) using simple two-dimensional design models. We demonstrate an effective large-bandwidth small-footprint beam collimator for light exiting a two-dimensional subwavelength scale photonic crystal waveguide consisting of an air core. This collimator relies on destructive interference between diffracted light from the mouth of the waveguide and the light emitted by surface resonators. We demonstrate efficient coupling between air-core photonic crystal waveguides and various two-dimensional models of photonic crystal fibers. A hollow-core photonic crystal fiber, described by an air defect with a Bragg stack cladding on either side, yields a coupling efficiency of better than 94% over a bandwidth of 25% of the center frequency, with peak transmittance exceeding 98%. A small-mode-area PCF, consisting of a subwavelength solid core attached by spokes to the PCF cladding, is modeled by a slab waveguide. In this latter case, we demonstrate coupling efficiency better than 94% over a bandwidth of 17%, with peak transmittance exceeding 99%. Combining collimation at the photonic crystal exit port and a nonadiabatic taper in a small-mode-area PCF, we obtain over 98% coupling efficiency over a bandwidth of 135 nm centered at a wavelength of 1.5 mu m. These results provide valuable paradigms for efficient transfer of optical information between photonic band gap (PBG) microcircuits and PCF-enabled telecommunication networks.
机译:我们使用简单的二维设计模型演示了光子晶体波导和光子晶体光纤(PCF)之间的高效宽带耦合。我们演示了一种有效的大带宽小足迹光束准直器,用于从由空芯组成的二维亚波长尺度光子晶体波导出射的光。该准直器依赖于来自波导口的衍射光与表面谐振器发出的光之间的相消干涉。我们演示了空心光子晶体波导和光子晶体光纤的各种二维模型之间的有效耦合。用空气缺陷描述的空心光子晶体光纤在两侧均带有布拉格堆叠包覆层,在中心频率的25%的带宽上,耦合效率优于94%,峰值透射率超过98%。一个小模式区域PCF由平板波导模拟,该PCF由通过辐条连接到PCF包层的亚波长实心磁芯组成。在后一种情况下,我们证明在17%的带宽上耦合效率优于94%,峰值透射率超过99%。结合在小模态PCF中在光子晶体出口处的准直和非绝热锥度,我们在以1.5μm波长为中心的135 nm带宽上获得了98%以上的耦合效率。这些结果为在光子带隙(PBG)微电路和支持PCF的电信网络之间有效传输光信息提供了宝贵的范例。

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