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首页> 外文期刊>Journal of Mechanical Engineering >Nanotechnological Enhancement of Infrared Detectors by Plasmon Resonance in Transparent Conductive Oxide Nanoparticles
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Nanotechnological Enhancement of Infrared Detectors by Plasmon Resonance in Transparent Conductive Oxide Nanoparticles

机译:透明导电氧化物纳米粒子中的等离子体共振对红外探测器的纳米技术增强作用。

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摘要

We investigated the use of plasmonic nanotechnology to enhance the performance of semiconductor infrared detectors. An increase of quantum efficiency, responsivity and specific detectivity is obtained by applying transparent conductive oxide (TCO) nanoparticles onto the surface of a photodetector. To this purpose we considered uncooled mercury cadmium telluride (HgCdTe) photoconductive detectors fabricated by isothermal vapor phase epitaxy, but the same procedure can be applied to cryogenically cooled devices, including those of photovoltaic type. The main mechanism of enhancement is light concentration ensured through localized plasmon resonance at the TCO nanoparticles and through enhanced scattering, while the desired wavelength range is reached by a further redshifting through the adjustment of nanoparticle properties. The improvement can be implemented during the final stages of production of the existing photovoltaic and photoconductive detectors. The method is applicable to various practical applications, including updating of high-precision guided ammunition.
机译:我们研究了等离子体纳米技术的使用,以增强半导体红外探测器的性能。通过将透明导电氧化物(TCO)纳米粒子应用于光电探测器的表面,可以提高量子效率,响应度和比探测率。为此,我们考虑了通过等温气相外延制造的未冷却汞碲化镉(HgCdTe)光电导检测器,但相同的过程也可应用于低温冷却的设备,包括光电类型的设备。增强的主要机制是通过TCO纳米粒子上的局部等离振子共振和增强的散射来确保光集中,而通过调整纳米粒子的特性进一步红移来达到所需的波长范围。可以在现有的光电探测器和光电探测器的生产的最后阶段实施改进。该方法适用于各种实际应用,包括高精度制导弹药的更新。

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