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具有小随机缺陷的光子晶体波导中局域模空间范围的下限

Lower bound for the spatial extent of localized modes in photonic-crystal waveguides with small random imperfections.

作者信息

Faggiani Rémi, Baron Alexandre, Zang Xiaorun, Lalouat Loïc, Schulz Sebastian A, O'Regan Bryan, Vynck Kevin, Cluzel Benoît, de Fornel Frédérique, Krauss Thomas F, Lalanne Philippe

机构信息

LP2N, UMR 5298, CNRS - IOGS - Univ. Bordeaux, 33400 Talence, France.

LCF, UMR 8501, CNRS - IOGS - Univ. Paris-Sud, 91127 Palaiseau, France.

出版信息

Sci Rep. 2016 Jun 1;6:27037. doi: 10.1038/srep27037.

Abstract

Light localization due to random imperfections in periodic media is paramount in photonics research. The group index is known to be a key parameter for localization near photonic band edges, since small group velocities reinforce light interaction with imperfections. Here, we show that the size of the smallest localized mode that is formed at the band edge of a one-dimensional periodic medium is driven instead by the effective photon mass, i.e. the flatness of the dispersion curve. Our theoretical prediction is supported by numerical simulations, which reveal that photonic-crystal waveguides can exhibit surprisingly small localized modes, much smaller than those observed in Bragg stacks thanks to their larger effective photon mass. This possibility is demonstrated experimentally with a photonic-crystal waveguide fabricated without any intentional disorder, for which near-field measurements allow us to distinctly observe a wavelength-scale localized mode despite the smallness (~1/1000 of a wavelength) of the fabrication imperfections.

摘要

由于周期性介质中的随机缺陷导致的光局域化在光子学研究中至关重要。众所周知,群折射率是光子带隙边缘附近局域化的关键参数,因为小群速度会增强光与缺陷的相互作用。在这里,我们表明,在一维周期性介质的带隙边缘形成的最小局域模的尺寸,反而由有效光子质量驱动,即色散曲线的平坦度。我们的理论预测得到了数值模拟的支持,数值模拟表明,光子晶体波导可以展现出令人惊讶的小局域模,由于其更大的有效光子质量,这些局域模比在布拉格堆栈中观察到的要小得多。通过制造的没有任何故意无序的光子晶体波导进行了实验验证,对于该波导,近场测量使我们能够清楚地观察到波长尺度的局域模,尽管制造缺陷很小(约为波长的1/1000)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b00/4887989/edcacb08d329/srep27037-f1.jpg

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