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Inverse-designed all-dielectric waveguide bend

机译:反设计的全介质波导弯曲

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Silicon photonics is a fast growing technology for high bandwidth optical communications. Bandwidth can be strongly enhanced with the use of multimode systems, but integrated photonics still has to operate in the single-mode regime. Indeed, most multi-mode photonic devices such as waveguide bends cannot preserve the integrity of the modes. Here we present an alternative inverse-design method to design an ultra-compact multimode waveguide bend. The convergence and performance of the algorithm are studied, along with a transform method that allows to design devices made of two materials only. The optimal device is studied with full electromagnetic simulations to compare its behavior with a more traditional circular waveguide bend. A broadband transmission with very low intermodal coupling is achieved. This illustrates the potential of the objective-first inverse-design method to design ultra-compact broadband photonic devices.
机译:硅光子学是一种快速发展的技术,用于高带宽光通信。使用多模系统可以大大提高带宽,但是集成光子学仍然必须在单模状态下运行。确实,大多数多模光子器件(例如波导弯曲)无法保持模的完整性。在这里,我们提出了一种替代的反设计方法来设计超紧凑的多模波导弯曲。研究了算法的收敛性和性能,以及允许仅设计由两种材料制成的器件的变换方法。对最佳设备进行了全面的电磁仿真研究,以将其性能与更传统的圆形波导弯曲进行比较。实现了具有非常低的联运耦合的宽带传输。这说明了客观优先的逆设计方法在设计超紧凑型宽带光子器件方面的潜力。

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