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All-optical set-reset flip-flop based on frequency bistability in semiconductor microring lasers

机译:半导体微环激光器中基于频率双稳态的全光置位复位触发器

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摘要

The electric field of the modes of semiconductor microring lasers (SMRLs) in the presence of bus waveguide reflections are linear combinations of the clock wise (CW) and the counter clock wise (CCW) electric fields. The mode structures can be controlled by the waveguide reflection coefficients. The power ratio and phase difference of the CW and CCW fields of one mode is proportional to the ratio of the reflection coefficients of the left and right waveguides. It is shown that the degenerate CW and CCW modes in the presence of bus waveguide reflections are split into two modes with different frequencies. Employing these new modes, SMRL can be used as an element to design flip-flops used in photonic integrated circuits. For a symmetric structure, the inter-frequencies of CW and CCW waves relating to each mode can be considered as the output of the optical flip-flop. Output of asymmetric mode is zero while the symmetric mode has a nonzero output.
机译:在存在总线波导反射的情况下,半导体微环激光器(SMRL)模式的电场是顺时针(CW)和逆时针(CCW)电场的线性组合。可以通过波导反射系数来控制模式结构。一种模式的CW和CCW场的功率比和相位差与左右波导的反射系数之比成正比。结果表明,在存在总线波导反射的情况下,简并的CW和CCW模式被分为具有不同频率的两种模式。利用这些新模式,SMRL可以用作设计光子集成电路中使用的触发器的元素。对于对称结构,与每种模式相关的CW和CCW波的频率可以视为光学触发器的输出。非对称模式的输出为零,而对称模式的输出为非零。

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