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Ultrafast tuning and probing of two-dimensional silicon photonic crystals.

机译:二维硅光子晶体的超快调谐和探测。

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摘要

The linear and nonlinear optical properties of two-dimensional silicon photonic crystals are studied using ultrafast laser pulses. Third order optical nonlinearities were used to tune the long (1.6 mum) and short wavelength (1.3 mum) band-edges of a stop-gap. From the pump-probe reflectivity experiments, a 140 fs, 1.5 mum pump pulse was observed to induce optical tuning of the 1.3 mum band-edge via the Kerr effect whereas a 1.76 mum pulse induced tuning of the 1.6 mum band-edge via both Kerr and Drude effects with the latter related to two-photon induced generation of free carriers. The optical tuning response of the photonic crystal was further shown to be influenced by the spatial characteristics of the pump eigenmode. This was demonstrated using 1.5 mum pump pulses and monitored via time-resolved reflectivity measurements at the 1.9 mum band-edge. Electron-hole pairs generated by two-photon absorption of the pump pulses spatially modify the refractive index of the crystal. For a pump eigenmode producing an initial inhomogeneous carrier distribution, diffusion is responsible for an initially fast (10 ps time scale) component of the recovery of the probe reflectivity with surface recombination accounting for a slower response (700 ps time scale) after the carriers are nearly uniformly distributed within the silicon backbone. When carriers are initially generated homogeneously, surface recombination alone controls the time evolution of the probed mode. The phase characteristics and temporal shape of reflected pulses were shown to be strongly influenced by coherent Bragg scattering and incoherent, multiple scattering in the photonic crystal. The shape of Bragg reflected pulses differs insignificantly from the incident pulse as expected, however for pulses outside the stop-gap, multiple scattering distorts the specular pulse shape and the pulse width is broadened by as much as 46% depending on sample location. On the gap-edge, Bragg scattering dominates over multiple scattering and the reflected pulse shape is mostly influenced by the asymmetric reflectivity spectrum and the input pulse characteristics such as its bandwidth and chirp.
机译:使用超快激光脉冲研究了二维硅光子晶体的线性和非线性光学性质。使用三阶光学非线性来调整间隙的长(1.6 mum)和短波长(1.3 mum)带边缘。从泵浦探针反射率实验中,观察到一个140 fs,1.5 mum的泵浦脉冲通过Kerr效应引起对1.3 mm频带边缘的光学调谐,而一个1.76 mum脉冲通过两个Kerr引起对1.6 mm频带边缘的光学调谐。后者的Drude效应与双光子诱导的自由载体的产生有关。进一步显示,光子晶体的光学调谐响应受到泵浦本征模式的空间特性的影响。使用1.5微米泵浦脉冲进行了演示,并通过在1.9微米波段边缘的时间分辨反射率测量进行了监视。由泵浦脉冲的两个光子吸收产生的电子-空穴对在空间上改变了晶体的折射率。对于产生初始不均匀载流子分布的泵浦本征模式,扩散是探针反射率恢复的初始快速(10 ps时间标度)分量,表面重组导致载流子响应较慢(700 ps时间标度)。几乎均匀地分布在硅骨干内。当最初均匀生成载流子时,仅表面重组就可以控制探测模式的时间演变。结果表明,反射脉冲的相位特性和时间形状受光子晶体中相干布拉格散射和不相干多次散射的强烈影响。布拉格反射脉冲的形状与预期的入射脉冲差异不大,但是,对于在禁隙之外的脉冲,多次散射会使镜面脉冲形状失真,并且脉冲宽度根据样品位置而变宽多达46%。在间隙边缘,布拉格散射在多重散射中占主导地位,并且反射脉冲形状主要受非对称反射率光谱和输入脉冲特性(例如其带宽和chi)的影响。

著录项

  • 作者

    Tan, Hong Wee.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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