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Angular selectivity of SOI photodiode with surface plasmon antenna

机译:SOI光电二极管与表面等离子体天线的角度选择性

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A novel angle selective photodetector with gold surface plasmon (SP) antenna on a silicon-on-insulator (SOI) photodiode (PD) is proposed to capture the direction of the incident light. Two types of SP antenna, namely one-dimensional line-and-space grating and two-dimensional hole array grating, are reported. The SP antenna efficiently couples the incident light with the waveguide modes in the SOI PD at specific incident angles. The analytical modelling based on the phase matching between the diffracted light from the SP antenna and the propagating light in the SOI predicts the angle selective behavior of the device. The simulation by finite difference time domain (FDTD) method and measurement have successfully confirmed the prediction. These characteristics to detect the light at different incident angles could be useful in emerging applications such as lensless imaging.
机译:提出了一种具有金表面等离子体(SP)天线的新型角度选择性光电探测器在绝缘体上(SOI)光电二极管(PD),以捕获入射光的方向。报道了两种类型的SP天线,即一维线条光栅和二维​​空穴阵列光栅。 SP天线在特定的入射角处有效地将入射光与SOI Pd中的波导模式耦合。基于来自SP天线的衍射光与SOI中传播光之间的相位匹配的分析建模预测了设备的角度选择性行为。通过有限差分时域(FDTD)方法和测量的模拟成功确认了预测。检测不同入射角以不同入射角的光的这些特性可用于新出现的应用,例如无透镜成像。

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