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Photonic Crystals on Erbium doped tellurite Thin Films for Broadband Enhanced Photoluminescence at Near Infrared

机译:掺铒籽砂晶晶体的光子晶体,用于近红外线增强的光致发光

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Two dimensional Er~(3+)-TeO_2 thin film photonics crystals (PhCs) are fabricated. These PhCs demonstrate broadband enhancement of PL emission at near Infrared (NIR). The PhC structures are written by dual beam focused ion beam (FIB). Highly uniformed patterns with smooth surfaces are observed. A pattern resolution better than hundred nanometers is achieved. PhCs arrays with photonic lattice constants from 350 nm to 1700 nm are examined in order to optimize the PL extraction efficiency. Strong photoluminescence around 1530 nm is observed by 488-532 nm lasers pumping. A confocal microscopy with spectrometer is used to capture the broadband PL signals from individual PhC array. The emission enhancement factor and spectral dependent extraction ratio are analyzed to find the interaction between PL lightwave and PhC structures. By optimize the PhC structures, 1500 um-1560 um broadband PL is successfully converted between the PL emission layer and the external cavity. A 60% enhancement of surface extraction efficiency is achieved when PhC with periodicity a=800 nm is applied. When photonic lattice constants a are smaller than the critical periodicity 600 nm, the PL light becomes confined inside the thin film layer. Simulation is also performed by two dimensional finite difference time domain (FDTD) calculation in order to explain the experimental observed anisotropic PL enhancements. The broadband PL enhancement enables Er~(3+)-TeO_2 PhCs thin film as a potential light source for three dimensional integrated photonic circuits.
机译:制造二维ER〜(3 +) - TEO_2薄膜光子学晶体(PHCS)。这些PHCS展示了近红外(NIR)的PL发射的宽带增强。 PHC结构由双光束聚焦离子束(FIB)写入。观察到具有光滑表面的高度均匀的图案。实现了比百纳米更好的图案分辨率。检查具有350nm至1700nm的光子晶格常数的PHCS阵列,以优化PL提取效率。 488-532 NM激光泵送观察到强大的光致发光左右1530nm。使用光谱仪的共聚焦显微镜用于捕获来自单个PHC阵列的宽带PL信号。分析发射增强因子和光谱依赖性提取比以找到PL光波和PHC结构之间的相互作用。通过优化PHC结构,1500UM-1560 UM宽带PL在PL发光层和外腔之间成功转换。当施加周期性A = 800nm的PHC时,实现了60%的表面提取效率。当光子晶格常数A小于临界周期600nm时,PL光变得局限于薄膜层内。模拟也由二维有限差分时域(FDTD)计算执行,以说明实验观察到的各向异性PL增强功能。宽带PL增强使得ER〜(3 +) - TEO_2 PHCS薄膜作为三维集成光子电路的潜在光源。

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