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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Compact optical circulator based on a uniformly magnetized ring cavity
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Compact optical circulator based on a uniformly magnetized ring cavity

机译:基于均匀磁化环形腔的紧凑型光环行器

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We propose a new class of compact integrated optical circulators providing a large isolation level while maintaining a straightforward technological feasibility. Their layout is based on a nonreciprocal radial Bragg cavity composed of concentric magneto-optical rings. The circulator ports are standard rib waveguides, butt-coupled to the cavity by cutting through its outer rings. The device is specifically designed for operation in a uniform external magnetic field. Using a coupled-mode description of the complete cavity/waveguide-port system, we explore the rich behaviour of cavity circulators in presence of varying levels of direct port-to-port coupling. We demonstrate numerically a strongly miniaturized two-dimensional cavity circulator, with a total footprint of less than (10λ)~2, achieving a 20-dB isolation level at telecom frequencies over a bandwidth of 130 GHz. The device is found to be very tolerant with respect to fabrication imperfections. We finish with an outlook on three-dimensional versions of the proposed nonreciprocal cavities.
机译:我们提出了一种新型的紧凑型集成光环行器,该环行器在保持简单的技术可行性的同时提供了较大的隔离级别。它们的布局基于同心磁光环组成的不可逆径向布拉格腔。环行器端口是标准的肋形波导,通过切开其外环而对接耦合到空腔。该设备专门设计用于在均匀的外部磁场中运行。使用完整腔/波导端口系统的耦合模式描述,我们探讨了在存在不同级别的直接端口到端口耦合的情况下腔循环器的丰富特性。我们用数值论证了一个高度小型化的二维腔环行器,其总足迹小于(10λ)〜2,在130 GHz带宽的电信频率上实现了20 dB的隔离度。发现该设备对于制造缺陷非常宽容。最后,我们对提出的不可逆型腔的三维版本进行了展望。

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