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Cavity-resonator-integrated grating input/output couplers for WDM optical-interconnect system in package

机译:封装中集成了腔谐振器的光栅输入/输出耦合器,用于WDM光互连系统

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A key component for high-density and ultra-broad-band intra-board chip-to-chip signal transmission is an integrated-optic coupler of several-micron aperture coincident with the emission diameter of typical single-transverse-mode VCSEL. A new type of coupler named cavity-resonator integrated grating input/output coupler (CRIGIC), recently proposed by some of the authors, has remarkable features of small aperture and vertical coupling with high coupling efficiency. CRIGIC consists of one grating coupler (GC) between two distributed Bragg reflectors (DBRs) with phase-shifting spaces. In an output coupling of a guided wave to a radiation wave, an incident forward guided wave is partially reflected by the front DBR, partially coupled out by GC to radiation waves, and reflected by the rear DBR to backward guided wave. A phase-shifting space between GC and the rear DBR is determined so that the backward guided wave from the rear DBR is radiated by GC in phase with the radiation of the forward guided wave. The coupling efficiency of the front DBR and another phase-shifting space between GC and the front DBR are chosen so that the transmission of the backward guided wave from GC is canceled by the reflection of the forward guided wave by the front DBR. Thus CRIGIC generates neither transmission nor reflection, providing 100% radiation even if GC has too small aperture to give high efficiency in a usual one-way propagation scheme. In order to demonstrate the operation principle of CRIGIC, a simple structure of 20 μm aperture length was designed, fabricated and characterized. The out-coupled power from CRIGIC was estimated to be 80 % of that from conventional GC of 500 μm coupling length, indicating almost 20 times miniaturization in aperture was achieved. Integration of CRIGIC and a different-guided-mode-coupling DBR was discussed to construct a free-space-wave add/drop multi-/demultiplexer (ADM) in a thin film waveguide for an application to WDM optical-inter--connect system in package. Eight-wavelength multiplexing within 20 nm wavelength range was considered. ADMs were designed and their performance was simulated theoretically.
机译:高密度和超宽带板内芯片间信号传输的关键组件是几微米孔径的集成光耦合器,与典型的单横向模式VCSEL的发射直径一致。一些作者最近提出了一种新型的耦合器,称为腔谐振器集成光栅输入/输出耦合器(CRIGIC),具有小孔径和垂直耦合以及高耦合效率的显着特点。 CRIGIC由两个带相移空间的分布式布拉格反射器(DBR)之间的一个光栅耦合器(GC)组成。在导波与辐射波的输出耦合中,入射的前向导波被前DBR部分反射,被GC部分耦合出至辐射波,并由后DBR反射为后向波导。确定GC与后DBR之间的相移空间,以使来自后DBR的后向导波被GC以与前向导波的辐射同相地辐射。选择前DBR以及GC与前DBR之间的另一个相移空间的耦合效率,以便通过前DBR对前导波的反射来抵消来自GC的后导波的传输。因此CRIGIC既不产生透射也不产生反射,即使GC的孔径太小而无法在通常的单向传播方案中提供高效率,它也提供100%的辐射。为了演示CRIGIC的工作原理,设计,制造和表征了孔径为20μm的简单结构。据估计,CRIGIC的耦合输出功率为传统气相色谱仪耦合长度为500μm的80%,这表明孔径可实现近20倍的缩小。讨论了CRIGIC和不同导模耦合DBR的集成,以在薄膜波导中构建自由空间波分插复用器(ADM),以应用于WDM光学互连系统在包装中。考虑了在20 nm波长范围内的八波长复用。设计了ADM,并从理论上模拟了它们的性能。

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