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电场对碲镉汞光电二极管双光子吸收跃迁的影响
引用本文:崔昊杨,许永鹏,曾俊冬,杨俊杰,初凤红,唐忠.电场对碲镉汞光电二极管双光子吸收跃迁的影响[J].红外与毫米波学报,2014,33(1):36-39.
作者姓名:崔昊杨  许永鹏  曾俊冬  杨俊杰  初凤红  唐忠
作者单位:上海电力学院电子与信息工程学院,上海电力学院电子与信息工程学院,上海电力学院电子与信息工程学院,上海电力学院电子与信息工程学院,上海电力学院电子与信息工程学院,上海电力学院电子与信息工程学院
基金项目:国家自然科学基金项目(面上项目,重点项目,重大项目)
摘    要:实验研究了具有pn结结构的碲镉汞光电二极管的双光子吸收.激发光源采用了皮秒红外脉冲激光.尽管入射光子能量仅为碲镉汞材料带隙的60%左右,在光电二极管两电极端仍然观察到了显著的光伏响应信号.利用线性关系拟合双对数坐标系下光伏响应与入射光强的关系,发现两者呈现二次幂函数增强趋势,表明这种光伏响应是一种典型的双光子吸收过程.通过调节光电二极管两端的反向偏压,空间电荷区内的双光子吸收系数可比耗尽层外的强致130倍,这种双光子吸收系数的场致增强现象可归因为双光子吸收的FK效应所致.对比空间电荷区内外双光子吸收产生的光生载流子数量,证实空间电荷区内的双光子吸收会强烈地影响器件的光伏响应.

关 键 词:碲镉汞  双光子吸收系数  光伏响应
收稿时间:2013/5/25
修稿时间:6/5/2013 12:00:00 AM

Influence of electric field on two-photon absorption transition in HgCdTe photodiode
CUI Hao-Yang,XU Yong-Peng,ZENG Jun-Dong,YANG Jun-Jie,CHU Feng-Hong and TANG Zhong.Influence of electric field on two-photon absorption transition in HgCdTe photodiode[J].Journal of Infrared and Millimeter Waves,2014,33(1):36-39.
Authors:CUI Hao-Yang  XU Yong-Peng  ZENG Jun-Dong  YANG Jun-Jie  CHU Feng-Hong and TANG Zhong
Affiliation:School of Electronic and information engineering,Shanghai University of Electric Power,School of electronic and information engineering, Shanghai university of electric power,School of electronic and information engineering, Shanghai university of electric power,School of electronic and information engineering, Shanghai university of electric power,School of electronic and information engineering, Shanghai university of electric power,School of electronic and information engineering, Shanghai university of electric power
Abstract:An experimental study of two photon absorption(TPA) in the HgCdTe pn junction detectors was reported. The excitation light source was a picosecond pulsed infrared laser. Even the incident photon energy was about 60% of HgCdTe(MCT) bandgap, an obviously photo-response was still observed. Quantification dependence of the peak amplitude on the incident intensity presented a slope of 2 by linear fitting to the experimental data in log-log coordinate, which indicated that the photo-response exhibited a quadratic power dependence on the incident intensity, suggesting a typical TPA process. The two photon absorption coefficient(TPAC) inside the space charge region(SCR) is as high as 130 times that of outside the depletion region which can be attributed to the TPA Franz-keldysh effect.
Keywords:HgCdTe  two-photon absorption coefficient  photovoltaic-response
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