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Impact of optical antennas on active optoelectronic devices

机译:光学天线在积极的影响光电设备

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摘要

Remarkable progress has been made in the fabrication and characterization of optical antennas that are integrated with optoelectronic devices. Herein, we describe the fundamental reasons for and experimental evidence of the dramatic improvements that can be achieved by enhancing the light-matter interaction via an optical antenna in both photon-emitting and -detecting devices, in addition, integration of optical antennas with optoelectronic devices can lead to the realization of highly compact multifunctional platforms for future integrated photonics, such as low-cost lab-on-chip systems. In this review paper, we further focus on the effect of optical antennas on the detectivity of infrared photodetectors. One particular finding is that the antenna can have a dual effect on the specific detectivity, while it can elevate light absorption efficiency of sub-wavelength detectors, it can potentially increase the noise of the detectors due to the enhanced spontaneous emission rate. In particular, we predict that the detectivity of interband photon detectors can be negatively affected by the presence of optical antennas across a wide wavelength region covering visible to long wavelength infrared bands. In contrast, the detectivity of intersubband detectors could be generally improved with a properly designed optical antenna.
机译:取得了显著进展制造和光学特性与光电集成天线设备。和实验证据的原因可以通过戏剧性的改善通过加强件轻松事交互光学天线在光子释放和检测设备,此外,集成的光学与光电子设备天线导致高度紧凑的实现为未来的集成多功能平台台光子学,如低成本芯片实验室系统。综述论文,我们进一步关注光学天线的探测能力的影响红外线光电探测器。天线可以有双重影响吗特定的探测能力,同时可以提高光sub-wavelength吸收效率探测器,它可能会增加噪音的探测器由于增强自发的发射率。带间的光子探测器的探测能力负面影响光的存在天线在宽波长区域覆盖可见长波长红外波段。相反,intersubband的探测能力探测器可以普遍提高正确设计的光学天线。

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