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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Polarization-dependent photocurrent enhancement in metamaterial-coupled quantum dots-in-a-well infrared detectors
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Polarization-dependent photocurrent enhancement in metamaterial-coupled quantum dots-in-a-well infrared detectors

机译:超材料耦合量子阱中红外探测器中偏振相关的光电流增强

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摘要

We demonstrate polarization-dependent photo-response enhancement in metamaterial-coupled quantum dots-in-a-well infrared detectors. A gold split-ring resonator metamaterial layer was patterned by electronbeam lithography in the detector aperture. In this integrated structure, the detector spectral response is given by the convolution of the metamaterial field enhancement and the original detector response. Our polarization-resolved measurement unambiguously shows that the spectral response can be strongly modified by metamaterial patterning. When the metamaterial resonance matches the QD absorption peak, we obtain a clear enhancement of generated photocurrent. Various metamaterial designs can be employed to implement multi-functional detector structures.
机译:我们演示了超材料耦合量子点在井中红外探测器中偏振相关的光响应增强。通过电子束光刻在检测器孔径中对金开口环谐振器超材料层进行构图。在这种集成结构中,探测器的光谱响应由超材料场增强和原始探测器响应的卷积给出。我们的偏振分辨测量清楚地表明,可以通过超材料构图强烈地改变光谱响应。当超材料共振与QD吸收峰相匹配时,我们会明显增强产生的光电流。可以采用各种超材料设计来实现多功能检测器结构。

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