光子集成电路中光子波导紧凑型设计中的三条带耦合长度分析

Veer Chandra, Santosh Kumar, Rakesh Ranjan
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摘要

紧凑光子波导的发展使得利用复杂的设计结构设计非常密集的光子集成电路成为可能。紧凑型光子波导则要求相邻光子波导之间具有较高的耦合长度,以避免相邻光子波导之间的串扰。最近的一些研究表明,为了增加相邻光子波导之间的耦合长度,可以使用它们之间的条带。在目前的工作中,我们的重点是在减少相邻波导之间的分离的情况下获得更高的耦合长度。采用3条均匀硅条,光子波导端到端间距为300 μm时,最大耦合长度为3029µm。所得结果比先前报道的相同光子波导间距下的数值要高。较高的耦合长度有利于设计许多紧凑的光子器件,如分光器、光子开关等。
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Coupling Length Analysis by Using Three Strips for Compact Design of Photonic Waveguide in Photonic Integrated Circuit
Development of compact photonic waveguide makes the possibility to design very dense photonic integrated circuits by using complex design structure. Conversely, compact photonic waveguide requires high coupling length between the neighboring photonic waveguides to avoid crosstalk between them. Some recent research demonstrated that to increase the coupling length between adjacent photonic waveguides, one can use the strips between them. In the current work, our focus is to obtain higher coupling length with reduced separation between the adjacent waveguides. By using three uniform silicon strips, the maximum coupling length of 3029µm has been achieved for the end-to-end separation between photonic waveguides of 300 μm. The obtained result is higher than previously reported values at the same separation of photonic waveguides. Higher coupling length is beneficial to design many compact photonic devices such as splitter, photonic switches, etc.
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