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利用光控电子加速器增强光电探测器性能。

Photodetector performance enhancement using an electron accelerator controlled by light.

作者信息

Srithanachai Itsara, Dilla Zainol Farrah, Ueamanapong Surada, Niemcharoen Surasak, Ali Jalil, Yupapin Preecha P

机构信息

Department of Electronics Engineering, Faculty of Engineering, King Mongkut's Institute of Technology Ladkrabang, Bangkok, Thailand.

出版信息

Appl Opt. 2012 Jul 20;51(21):5111-8. doi: 10.1364/AO.51.005111.

Abstract

A new method of photodetector performance enhancement using an embedded optical accelerator circuit within the photodetector is proposed. The principle of optical tweezer generation using a light pulse within a PANDA ring is also reviewed. By using a modified add-drop optical filter known as a PANDA microring resonator, which is embedded within the photodetector circuit, the device performance can be improved by using an electron injection technique, in which electrons can be trapped by optical tweezers generated by a PANDA ring resonator. Finally, electrons can move faster within the device via the optical waveguide without trapping center in the silicon bulk to the contact, in which the increase in photodetector current is seen. Simulation results obtained have shown that the device's light currents are increased by the order of four, and the switching time is increased by the order of five. This technique can be used for better photodetector performance and other semiconductor applications in the future.

摘要

提出了一种利用光电探测器内部嵌入的光学加速器电路来提高光电探测器性能的新方法。还回顾了利用熊猫环内的光脉冲产生光镊的原理。通过使用一种称为熊猫微环谐振器的改进型分插光学滤波器(该滤波器嵌入在光电探测器电路中),可以通过电子注入技术提高器件性能,在该技术中,电子可被熊猫环谐振器产生的光镊捕获。最后,电子可以通过光波导在器件内更快地移动,而无需在硅块体中陷入捕获中心到达触点,从而实现光电探测器电流的增加。获得的仿真结果表明,器件的光电流增加了四个数量级,开关时间增加了五个数量级。该技术未来可用于实现更好的光电探测器性能以及其他半导体应用。

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