p-GaAs同质结太赫兹探测器的优化与性能
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上海交通大学 物理与天文系,上海交通大学 物理与天文系,上海交通大学 物理与天文系,上海交通大学 物理与天文系

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国家自然科学基金(11074167,91221201,61234005),863计划(2011AA010205).


Optimization and performance of p-GaAs homojunction THz detectors
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Department of physics and astronomy,Shanghai Jiao Tong university,Department of physics and astronomy,Shanghai Jiao Tong university,Department of physics and astronomy,Shanghai Jiao Tong university,Department of physics and astronomy,Shanghai Jiao Tong university

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    摘要:

    从提高p-GaAs同质结太赫兹探测器量子效率出发, 在考虑温度和偏压等参数的影响后, 优化了谐振腔增强的p-GaAs同质结太赫兹探测器的材料及结构参数, 使探测器的量子效率提高到了17%.并计算了探测器的响应率、探测率和偏压、温度、光谱频率的关系, 得到了最佳工作偏压(10~40mV)、最佳工作温度(<8K)和最大探测率(4.1×1010cm Hz1/2/W).而通过施加一对匹配的反射镜来构造谐振腔的设计, 所能获得的极限量子效率为26%, 极限探测率和响应率分别为5.7×1010cm Hz1/2/W、25.9A/W.

    Abstract:

    In order to improve the quantum efficiency of THz detectors made of p-GaAs homojunction, the effects of temperature and bias voltage were taken into account. By optimizing the materials and structure parameters of the resonant cavity enhanced p-GaAs HIWIP detectors, its quantum efficiency was increased to 17%. The relationships among the responsivity and detectivity of the detector, bias voltage, temperature and spectral frequency were simulated, leading to an optimized bias voltage range(10~40mV), an optimal temperature(< 8K) and a maximum detectivity(4.1×1010cm Hz1/2/W). By applying a pair of matched mirror, the ultimate quantum efficiency, the detectivity and the responsivity are 26%, 5.7×1010cm Hz1/2/W and 25.9 A/W, respectively.

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钱 飞,王天盟,张月蘅,沈文忠. p-GaAs同质结太赫兹探测器的优化与性能[J].红外与毫米波学报,2015,34(1):29~35]. QIAN Fei, WANG Tian-Meng, ZHANG Yue-Heng, SHEN Wen-Zhong. Optimization and performance of p-GaAs homojunction THz detectors[J]. J. Infrared Millim. Waves,2015,34(1):29~35.]

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  • 收稿日期:2013-10-16
  • 最后修改日期:2013-11-14
  • 录用日期:2013-11-15
  • 在线发布日期: 2015-04-03
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