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A back side configured pointed dipole plasmonic optical antenna array enhanced quantum dot infrared photodetector

机译:背面配置的尖头偶极等离子体激元光学天线阵列增强型量子点红外光电探测器

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摘要

In this paper, we report a back side configured pointed dipole optical antenna array enhanced quantum dot infrared photodetector (QDIP). In this configuration, the light illumination is from the substrate side (i.e. back side illumination), goes through the QDIP and then reaches the optical antenna array. The near-field electric fields (E-fields) are simulated for both top and back side illuminations. The back side configured pointed dipole antenna array gives stronger E-fields than the top side configuration. The physical mechanism for the difference is analyzed. A longwave infrared QDIP with the back side configured pointed dipole optical antenna array was fabricated and tested. The measurements agree well with the simulation. Compared with the top side configured optical antenna array, the back side configured optical antenna array allows easier fabrication of large format (e.g. 640 x 512 or 1024 x 1024) focal plane arrays and provides higher plasmonic enhancement.
机译:在本文中,我们报告了背面配置的尖头偶极子光学天线阵列增强型量子点红外光电探测器(QDIP)。在这种配置中,光照射来自基板侧(即背面照射),穿过QDIP,然后到达光学天线阵列。模拟了顶部和背面照明的近场电场(电场)。背面配置的尖头偶极子天线阵列比顶部配置提供更强的电场。分析了差异的物理机制。制作并测试了具有背面配置的尖头偶极子光学天线阵列的长波红外QDIP。测量结果与模拟非常吻合。与顶侧构造的光学天线阵列相比,背侧构造的光学天线阵列允许更容易地制造大格式(例如640×512或1024×1024)焦平面阵列,并提供更高的等离子体增强。

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