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Near-Zero Index Photonic Crystals with Directive Bound States in the Continuum

机译:近零指数光子晶体,导向符号在连续体中

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摘要

Near-zero-index platforms arise as a new opportunity for light manipulation with boosting of optical nonlinearities, transmission properties in waveguides, and constant phase distribution. In addition, they represent a solution to impedance mismatch faced in photonic circuitry offering several applications in quantum photonics, communication, and sensing. However, their realization is limited to the availability of materials that could exhibit such low index. For materials used in the visible and near-infrared wavelengths, the intrinsic losses annihilate most of near-zero index properties. The design of all-dielectric photonic crystals with specific electromagnetic modes overcomes the issue of intrinsic losses while showing effective mode index near zero. Nonetheless, these modes strongly radiate to the surrounding environment, greatly limiting the devices applications. Here, a novel all-dielectric photonic crystal structure is explored that is able to sustain effective near-zero-index modes coupled to directive bound-states in the continuum in order to decrease radiative losses, opening extraordinary opportunities for radiation manipulation in nanophotonic circuits. Moreover, its relatively simple design and phase stability facilitate integration and reproducibility with other photonic components.
机译:近零索引平台由于光学非线性提高,波导中的传动特性和恒定相分布而出现近索索平台。此外,它们代表了在光子电路中面临的阻抗不匹配的解决方案,其在量子光子,通信和感测中提供多种应用。然而,它们的实现仅限于可以表现出这样低指数的材料的可用性。对于在可见和近红外波长的材料中使用的材料,内在损失将消灭大部分接近零指标特性。具有特定电磁模式的全电介质光子晶体的设计克服了内在损耗的问题,同时显示出零附近的有效模式指标。尽管如此,这些模式强烈地辐射到周围环境,大大限制了设备应用。这里,探索了一种新的全电介质光子晶体结构,其能够维持耦合到连续内的指示界定状态的有效接近零指数模式,以降低辐射损失,打开纳米光电电路中的辐射操作的非凡机会。此外,其相对简单的设计和相位稳定性促进了与其他光子成分的集成和再现性。

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