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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Spontaneous emission intensity and anisotropy of quantum dot films in proximity to nanoscale photonic-plasmonic templates
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Spontaneous emission intensity and anisotropy of quantum dot films in proximity to nanoscale photonic-plasmonic templates

机译:纳米级光子 - 浆膜附近的自发发射强度和量子点薄膜的各向异性

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We discuss results on spontaneous emission intensity and lifetime anisotropy of cadmium selenide quantum dot monolayer films placed in close proximity to a porous block copolymer based photonic-plasmonic two dimensional array. The porous block copolymer cylinders can be filled with metal nanoparticles and the concentration of these nanoparticles is varied to control both the photoluminescence intensity and lifetime of a layer of quantum dots placed above the template. Significant emission enhancement is achieved even for the quantum dot layer whose core lies about 1 nm above the template surface. Interestingly, polarised decay lifetime analysis indicates considerable emission anisotropy, as well for these quantum dots. Our results thus demonstrates how such hybrid optical materials can be created with controlled optical properties and suggests extension of this method to other novel two dimensional materials in combination with the photonic-plasmonic template.
机译:我们讨论了甲二醇酸亚硒化醇量子点单层膜的自发发射强度和寿命各向异性的结果,其靠近多孔嵌段基于基于光子级的光电相二维阵列。 多孔嵌段共聚物圆柱体可以填充有金属纳米颗粒,并且这些纳米颗粒的浓度变化,以控制放置在模板上方的量子点层的光致发光强度和寿命。 即使对于核心在模板表面上方约1nm的量子点层,也可以实现显着的发射增强。 有趣的是,极化衰减寿命分析表明了相当大的发射各向异性,以及这些量子点。 因此,我们的结果表明,可以使用受控光学性能产生这种混合光学材料,并建议将该方法与其他新颖的二维材料结合使用光子等级模板。

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