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Plasmonic nanoparticle scattering for enhanced performance of photovoltaic and photodetector devices

机译:用于增强光伏和光电探测器装置的等离子体纳米粒子散射

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A variety of approaches are examined for exploiting the optical properties of metal or dielectric nanoparticles, particularly those associated with surface plasmon polariton resonances, to improve the performance of semiconductor photodetectors and photovoltaic devices. Early and recent concepts for employing optical absorption and local electromagnetic field amplitude increases associated with surface plasmon polariton excitation to improve photocurrent generation in organic photovoltaic devices are briefly reviewed. The application of optical scattering properties of nanoparticles to improve transmission of optical power into, and consequently photocurrent response in, Si and a-Si:H photodiodes is then described, and effects related to scattered-wave phase shifts and interference effects between scattered and directly transmitted wave components in producing either enhancement or suppression of photocurrent response at different wavelengths are discussed. Coupling of photons incident normal to the surface of a semiconductor thin-film device into lateral, optically confined paths within waveguide structures formed by refractive index contrast either within the semiconductor structure, or between the semiconductor and surrounding dielectric material, is discussed in the context of early and recent studies of such coupling in silicon-on-insulator photodetectors, and recent work on engineering of photon propagation paths in III-V compound semiconductor quantum well solar cells.
机译:检查各种方法,用于利用金属或介电纳米颗粒的光学性质,特别是与表面等离子体极性谐振的光学性能,以改善半导体光电探测器和光伏器件的性能。简要地回顾了与表面等离子体极化膜激发相关的使用光学吸收和局部电磁场幅度的早期和最近的概念,以改善有机光伏器件中的光电流产生。纳米颗粒的光散射性能改善光功率传播,从而描述了Si和A-Si:H光电二极管的光电流响应,并与散射和直接之间的散射波相移和干扰效应相关的效果讨论了在不同波长处产生增强或抑制光电流响应的透射波分量。在半导体结构或半导体和周围介电材料之间讨论了通过折射率对比形成的波导结构内的波导结构内的横向,光学限制在横向的光学限制路径中的光子耦合。早期和最近在绝缘体硅光电探测器中这种联接的研究,以及近期对III-V复合半导体量子阱太阳能电池的光子传播路径工程的最新工作。

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