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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Tailoring of the resonant mode properties of optical nanocavities in two-dimensional photonic crystal slab waveguides
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Tailoring of the resonant mode properties of optical nanocavities in two-dimensional photonic crystal slab waveguides

机译:二维光子晶体平板波导中光学纳米腔的共振模特性的剪裁

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摘要

Optically thin dielectric slabs, in which a fully etched-through two-dimensional patterning is applied, are used to form high-Q optical cavities with modal volumes approaching the theoretical limit of a cubic half-wavelength. Resonant cavities are formed from local defect regions within the photonic lattice. Simple group theoretical techniques are developed to design cavities which support resonant modes with a particular polarization and radiation pattern. Numerical simulations using the finite-difference time-domain method are then used to study the detailed emission and loss properties of these modes. The cavities are probed spectroscopically through photoluminescence measurements, which when compared with numerical results show the presence of both donor and acceptor type modes. These experimental results show the predictive power of the modest symmetry analysis presented here in describing highly localized defect states within photonic crystals.
机译:光学薄的介电平板,其中应用了完全蚀刻的二维图案,用于形成模态体积接近立方半波长理论极限的高Q光腔。谐振腔由光子晶格内的局部缺陷区域形成。发展了简单的群理论技术来设计腔,该腔支持具有特定偏振和辐射图的谐振模。然后使用有限差分时域方法进行数值模拟,以研究这些模式的详细发射和损耗特性。通过光致发光测量对腔体进行光谱探测,当与数值结果进行比较时,表明存在供体和受体类型模式。这些实验结果表明,在描述光子晶体中高度局限的缺陷状态时,此处进行的适度对称分析具有预测能力。

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