金属光栅集成硅基阻塞杂质带(BIB)太赫兹探测器的吸收增强效应

Yulu Chen, Wulin Tong, Bingbing Wang, Lin Wang, Huiyuan Cui, Xiaodong Wang
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摘要

高灵敏度太赫兹(THz)探测技术因其在天文观测、人体安检、弱信号生物大分子检测等方面的潜在应用而受到广泛研究。本文对一种基于金属光栅/硅bib混合结构的新型太赫兹探测器进行了理论模拟并成功制作。时域有限差分仿真结果表明,周期为7μm、深度为5μm、占空比为2/7的金属光栅的波导共振效应使光场定位在吸收层区域。实验结果表明,在峰值波长为17μm处,其光谱响应比无金属光栅器件高223%。我们的工作成功地提出了一种实用的混合结构器件,用于生物大分子检测以及其他太赫兹应用中的弱信号检测。
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The absorption enhancement effect of metal gratings integrated Silicon-based Blocked-Impurity-Band (BIB) terahertz detectors
High-sensitivity Terahertz (THz) detection technology is widely researched for its potential applications in astronomical observation, human security check, weak signal biomacromolecule detection, etc. In this work, a novel THz detector based on metal gratings/Si-BIB hybrid structure is theoretically simulated and successfully fabricated. From FDTD simulation results, the optical field is localized in the absorbing-layer region due to the waveguide resonance effect of metal gratings with 7μm period, 5μm depth and 2/7 duty ratio. Then, the experimental results show that its spectral response is 223% higher than that of the device without metal gratings at the peak wavelength of 17μm. Our work successfully proposed a practical hybrid structure device for the biomacromolecule detection application as well as the weak signal detection in other THz applications.
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