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首页> 外文期刊>Applied Physics Letters >Plasmonic off-axis unidirectional beaming of quantum-well luminescence
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Plasmonic off-axis unidirectional beaming of quantum-well luminescence

机译:量子阱发光的等离轴离轴单向光束

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摘要

Plasmonic off-axis unidirectional beaming of luminescence is demonstrated using nitride semiconductor quantum wells. The underlying mechanism involves the near-field excitation of surface plasmon polaritons on an ultrathin metal film, which are then diffractively scattered by an adjacent periodic array of asymmetric metallic nanoparticles. By tailoring the nanoparticles shape, we show that forward scattering can be suppressed in favor of backward diffraction (or vice versa), thereby enabling unidirectional beaming at geometrically tunable oblique angles. These nanostructures can be used to control the output light directionality of arbitrary planar luminescent devices, with a spatial resolution that would be unattainable with bulk optics.
机译:使用氮化物半导体量子阱证明了等离子体的离轴单向发光。潜在的机理涉及超薄金属膜上表面等离激元极化子的近场激发,然后由相邻的非对称金属纳米颗粒的周期性阵列衍射散射。通过定制纳米粒子的形状,我们表明可以抑制前向散射,而有利于向后衍射(反之亦然),从而能够以几何可调的倾斜角度进行单向射束。这些纳米结构可用于控制任意平面发光器件的输出光方向性,其空间分辨率是大体积光学器件无法达到的。

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