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首页> 外文期刊>Optics Letters >Trap-door optical buffering using a flat-top coupled microring filter: the superluminal cavity approach
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Trap-door optical buffering using a flat-top coupled microring filter: the superluminal cavity approach

机译:使用平顶耦合微环滤镜的陷门光学缓冲:超腔腔方法

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摘要

We propose and analyze theoretically a trap-door optical buffer based on a coupled microrings flat-top add/drop filter (ADF). By tuning one of the microrings into and out of resonance we can effectively open and close the buffer trap door and, consequently, trap and release optical pulses. To attain a maximally flat filter we present a new design approach utilizing the concept of a white light cavity to attain an ADF that resonates over a wide spectral band. We show that the resulting ADF exhibits superior performance in terms of bandwidth and flatness compared to previous design approaches. We also present a realistic silicon-on-insulator-based design and a performance analysis, taking into consideration the realistic properties and limitations of the materials and the fabrication process, leading to delays exceeding 5 ns for an 80 GHz bandwidth and a corresponding delay-bandwidth product of approximately 400.
机译:我们提出并从理论上分析了基于耦合微环平顶分插滤光片(ADF)的活板门光学缓冲器。通过微环之一进入共振状态或脱离共振状态,我们可以有效地打开和关闭缓冲捕集阱门,从而捕获和释放光脉冲。为了获得最大平坦的滤波器,我们提出了一种新的设计方法,该方法利用白光腔的概念来实现在宽光谱带上谐振的ADF。我们证明,与以前的设计方法相比,所得的ADF在带宽和平坦度方面表现出优异的性能。考虑到材料和制造工艺的实际特性和局限性,我们还提出了一种基于绝缘体上硅的现实设计和性能分析,从而导致80 GHz带宽的延迟超过5 ns,并且相应的延迟-带宽乘积约为400。

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