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用于增强背照式量子点红外光电探测器的亚波长金属孔阵列结构分析

Analysis of subwavelength metal hole array structure for the enhancement of back-illuminated quantum dot infrared photodetectors.

作者信息

Ku Zahyun, Jang Woo-Yong, Zhou Jiangfeng, Kim Jun Oh, Barve Ajit V, Silva Sinhara, Krishna Sanjay, Brueck S R J, Nelson Robert, Urbas Augustine, Kang Sangwoo, Lee Sang Jun

机构信息

Air Force Research Laboratory, Wright-Patterson Air Force Base, Ohio 45433, USA.

出版信息

Opt Express. 2013 Feb 25;21(4):4709-16. doi: 10.1364/OE.21.004709.

Abstract

This paper is focused on analyzing the impact of a two-dimensional metal hole array structure integrated to the back-illuminated quantum dots-in-a-well (DWELL) infrared photodetectors. The metal hole array consisting of subwavelength-circular holes penetrating gold layer (2D-Au-CHA) provides the enhanced responsivity of DWELL infrared photodetector at certain wavelengths. The performance of 2D-Au-CHA is investigated by calculating the absorption of active layer in the DWELL structure using a finite integration technique. Simulation results show that the performance of the DWELL focal plane array (FPA) is improved by enhancing the coupling to active layer via local field engineering resulting from a surface plasmon polariton mode and a guided Fabry-Perot mode. Simulation method accomplished in this paper provides a generalized approach to optimize the design of any type of couplers integrated to infrared photodetectors. Experimental results demonstrate the enhanced signal-to-noise ratio by the 2D-Au-CHA integrated FPA as compared to the DWELL FPA. A comparison between the experiment and the simulation shows a good agreement.

摘要

本文着重分析二维金属孔阵列结构集成到背照式阱中量子点(DWELL)红外探测器上的影响。由穿透金层的亚波长圆形孔组成的金属孔阵列(二维金圆孔阵列,2D-Au-CHA)在特定波长下提高了DWELL红外探测器的响应度。通过使用有限积分技术计算DWELL结构中有源层的吸收来研究二维金圆孔阵列的性能。模拟结果表明,通过表面等离激元极化子模式和引导法布里-珀罗模式产生的局部场工程增强与有源层的耦合,提高了DWELL焦平面阵列(FPA)的性能。本文完成的模拟方法提供了一种通用方法,用于优化集成到红外探测器的任何类型耦合器的设计。实验结果表明,与DWELL FPA相比,二维金圆孔阵列集成FPA的信噪比得到了提高。实验与模拟结果之间的比较显示出良好的一致性。

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