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Evaluation of self-collimated beams in photonic crystals for optical interconnect

机译:用于光互连的光子晶体中自准直光束的评估

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摘要

Self-collimated beams and photonic bandgap mirrors in photonic crystals are evaluated for applicability in an on-chip interconnect system. Simulations using the plane-wave expansion and finite-difference time-domain methods are utilized to design and evaluate the theoretical performance of these systems, called a virtual waveguide due to borderless confinement of the signal. The effect of systematic and random fabrication errors on the performance is characterized. Coupling efficiency is virtually unaffected by misalignment, but is found to be a strong function of the length of the waveguide and the frequency of light. Additional routing capabilities of sharp 90/spl deg/ turns and signal crossings with no crosstalk are demonstrated. Photonic crystal virtual waveguides are ideal structures for on-chip optical signal routing.
机译:评估了光子晶体中的自准直光束和光子带隙镜在片上互连系统中的适用性。利用平面波扩展和时域有限差分方法进行的仿真被用来设计和评估这些系统的理论性能,这些信号由于信号的无边界约束而被称为虚拟波导。表征了系统和随机制造误差对性能的影响。耦合效率实际上不受未对准的影响,但发现它是波导长度和光频率的强函数。演示了锐利的90 / spl度/转和信号交叉而没有串扰的附加路由功能。光子晶体虚拟波导是片上光信号路由的理想结构。

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