-
基于拜尔滤波片(bayer filter)彩色成像技术在集成度和分辨率都已经接近极限, 无滤波片(filter-free)的彩色成像单元得到广泛的关注和研究. 纳米线自身腔模式可以实现对不同能量的光空间分布, 通过对纳米线形貌调控实现色彩分辨探测. 本文使用有限元法构建了能依靠自身结构完成分光目的, 能够作为光探测器的锥形纳米线器件. 数值模拟结果显示, 能够根据器件的顶半径、底半径、长度和材料等相关参数调整器件涵盖的波长范围和分辨率等重要参数, 并具体分析了如何进行调控. 同时进一步分析了该结构在实际制备器件时以及不同角度入射光下的器件性能. 这些研究结果对于将锥形结构纳米线作为光探测器的实际应用有重要的参考意义.Filterless color discriminative imaging system is greatly demanded, with the pixel size shrinking to subwavelength. Nanowires have broad applications in photodetectors and have excellent ability to discriminate color by the cavity mode effect due to its well-controlled geometry. Here we use the finite element method to simulate a coned nanowire device which can split the light as well as serve as a photodetector array. The numerical simulation results show that the important parameters such as the wavelength range and resolution realized by the device can be modulated by the top radius, bottom radius, length, and material as well. And we also analyze how the surroundings and the incident angle affect the performance of the device. These results have important reference significance for the practical application of tapered nanowires as photodetectors.
-
Keywords:
- coned nanowire /
- photodetector /
- cavity mode








下载: