Suppr超能文献

用于未来光子网络的超快速光子晶体/量子点全光开关。

Ultra-fast photonic crystal/quantum dot alloptical switch for future photonic networks.

作者信息

Hitoshi Nakamura, Sugimoto Yoshimasa, Kanamoto Kyozo, Ikeda Naoki, Tanaka Yu, Nakamura Yusui, Ohkouchi Shunsuke, Watanabe Yoshinori, Inoue Kuon, Ishikawa Hiroshi, Asakawa Kiyoshi

出版信息

Opt Express. 2004 Dec 27;12(26):6606-14. doi: 10.1364/opex.12.006606.

Abstract

We demonstrated a novel two-dimensional photonic crystal (PC) based Symmetric Mach Zehnder type all-optical switch (PC-SMZ) with InAs quantum dots (QDs) acting as a nonlinear phase-shift source. The 600- ?m-long PC-SMZ having integrated wavelength-selective PC-based directional couplers and other PC components exhibited a 15-ps-wide switching-window with 2-ps rise/fall time at a wavelength of 1.3 ?m. Nonlinear optical phase shift in the 500-?m-long straight PC waveguide was also achieved at sufficiently low optical-energy (e.g., ??phase shift at ~100-fJ control-pulse energy) due to the small saturation energy density of the QDs, which is enhanced in the PC waveguide, without using conventional measures such as SOAs with current-injected gain. The results pave the way to novel PC- and QD-based photonic integrated circuits including multiple PC-SMZs and other novel functional devices.

摘要

我们展示了一种基于二维光子晶体(PC)的新型对称马赫曾德尔型全光开关(PC-SMZ),其中砷化铟量子点(QD)用作非线性相移源。这种600微米长的PC-SMZ集成了基于波长选择PC的定向耦合器和其他PC组件,在1.3微米波长处呈现出15皮秒宽的开关窗口,上升/下降时间为2皮秒。由于量子点的饱和能量密度小,在500微米长的直PC波导中也能在足够低的光能量下实现非线性光学相移(例如,在~100飞焦控制脉冲能量下的相移),并且在PC波导中这种相移得到增强,无需使用诸如带电流注入增益的半导体光放大器等传统措施。这些结果为包括多个PC-SMZ和其他新型功能器件的新型基于PC和QD的光子集成电路铺平了道路。

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