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Slow light in tapered slot photonic crystal waveguide 被引量:2

Slow light in tapered slot photonic crystal waveguide
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摘要 A slotted single-mode photonic crystal waveguide with a linear tapered slot is presented to realize slow light,whose dispersion curve is shifted by changing the slot width.When the slot width is reduced,the band curve shifts in the tapered structure,and the group velocity of light approach zero at the cut-off frequency.Therefore,different frequency components of the guided light are slowed down even localized along the propagation direction inside a tapered slot photonic crystal waveguide.Furthermore,this structure can confine slow light-wave in a narrow slot waveguide,which may effectively enhance the interaction between slow light and the low-index wave-guiding materials filled in the slot.In addition,this tapered slot structure can be used to compensate group velocity dispersion of slow light by modifying the structure,thus opening the opportunity for ultra-wide bandwidth slow light. A slotted single-mode photonic crystal waveguide with a linear tapered slot is presented to realize slow light, whose dispersion curve is shifted by changing the slot width. When the slot width is reduced, the band curve shifts in the tapered structure, and the group velocity of light approach zero at the cut-off frequency. Therefore, different frequency components of the guided light are slowed down even localized along the propagation direction inside a tapered slot photonic crystal waveguide. Furthermore, this structure can confine slow light-wave in a narrow slot waveguide, which may effectively enhance the interaction between slow light and the low-index wave-guiding materials filled in the slot. In addition, this tapered slot structure can be used to compensate group velocity dispersion of slow light by modifying the structure, thus opening the opportunity for ultra-wide bandwidth slow light.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2009年第20期3658-3662,共5页
基金 Supported by the Major State Basic Research Development Program of China (973 Program) (Grant No. 2006CB604901) National Natural Science Foundation of China (Grant No. 60807016) China Postdoctoral Science Foundation (Grant No. 20080430279)
关键词 光子晶体波导 锥形 槽结构 单一模式 色散曲线 变化曲线 截止频率 传播方向 optical waveguides, slow light, photonic crystal waveguide
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参考文献10

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