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Selective Guided Mode Coupling via Bridging Mode by Integrated Gratings for Intraboard Optical Interconnects

机译:通过桥接模式通过集成的微型光栅进行选择性导向模式耦合,用于内部光学互连

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Growing attention is paid to intraboard optical interconnects among multi-chip modules because of its potential to solve so-called pin bottleneck problem in constructing ultrahigh speed information processing unit. Vertical integration of waveguides and their coupling as well as input/output coupling of guided waves from/to free-space waves are key issues. Three types of high performance coupling via bridging modes by integrated gratings are reviewed. Use of radiation mode as birding mode is discussed with advantage of selective coupling between two waveguides among multistory structure. Three waveguides were integrated with grating couplers, and wavelength-division demultiplexing with 5nm separation and 0.5nm selectivity from one waveguide to two other waveguides was demonstrated. Utilization of supermode as bridging mode is shown for optical add/drop multiplexing (OADM) function between two waveguides Device was designed to have high power transfer efficiency of almost 100% with high wavelength selectivity of 2nm, while preliminary experimental results were 40% efficiency with 1nm selectivity. OADM between guided wave and free-space wave is also discussed with utilization of supermode. Power transfer efficiency of 25% with wavelength selectivity of 4nm was obtained in coupling of guided wave to free-space wave, while theoretically predicted efficiency was 70% with 2nm selectivity.
机译:生长着眼于板内光学互连的多芯片模块中,因为其潜在的在构造超高速信息处理单元来解决所谓的销瓶颈问题。波导的垂直整合和他们的耦合,以及来自/导波到自由空间波的输入/输出耦合是关键问题。三种类型的高性能桥接通过由集成光栅耦合模式进行了综述。的辐射模式作为观鸟模式使用与优点选择性耦合的多层结构中的两个波导之间的讨论。三个波导与光栅耦合器被集成,并且波分复用具有5nm的分离和0.5nm的选择性解复用从一个波导至两个其他波导证实。示出了用于光插超模作为桥接模式的利用率/分插复用(OADM)的两个波导装置之间的功能被设计为具有几乎100%的为2nm高波长选择性高的功率传输效率,同时初步的实验结果分别为40效率% 1nm的选择性。导波和自由空间波之间的OADM也与超模的利用率讨论。在导波的耦合到自由空间波得到的25%的为4nm的波长选择性动力传递效率,而理论上预测效率为70%以2nm的选择性。

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