首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Tunable slow light and buffer capability in photonic crystal coupled-cavity waveguides based on electro-optic effect
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Tunable slow light and buffer capability in photonic crystal coupled-cavity waveguides based on electro-optic effect

机译:基于电光效应的光子晶体耦合腔波导中的可调慢光和缓冲能力

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摘要

An enhanced photonic crystal coupled-cavity waveguide (PC-CCW) is proposed to realize compact, ultra-fast modulated and high-performance buffering application. The slow light and buffer performances of PC-CCW are optimized by adjusting the cavity spacing and the hole size around the cavity. In the optimized structure, the group velocity is below 2.713 X 10~(-4)c. The corresponding delay time, buffer capacity and Q factor can reach as high as 12.286 ns, 68.5 bit and 3525, respectively. Then the dynamic modulation of slow light transmission and buffer capacity in PC-CCW are systemically studied. The simulation shows that the buffer capacity and the physical size of each bit are unchanged as the applied voltage increases. While the wavelength shift and delay time decrease almost linearly as the applied voltage increases. And the modulation sensitivities are about 3.726 nm/mV and 0.875 ns/mV, respectively. The Q factor also decreases accordingly.
机译:提出了一种增强型光子晶体耦合腔波导(PC-CCW),以实现紧凑,超快调制和高性能缓冲应用。 PC-CCW的慢光和缓冲性能可通过调整空腔间距和空腔周围的孔尺寸来优化。在优化的结构中,群速度低于2.713 X 10〜(-4)c。相应的延迟时间,缓冲区容量和Q因子分别可以达到12.286 ns,68.5位和3525。然后系统地研究了PC-CCW中慢光传输的动态调制和缓冲能力。仿真表明,随着施加电压的增加,缓冲区的容量和每个位的物理大小均保持不变。随着施加电压的增加,波长偏移和延迟时间几乎线性减小。调制灵敏度分别约为3.726 nm / mV和0.875 ns / mV。 Q因子也相应降低。

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