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A Polarization-Dependent Normal Incident Quantum Cascade Detector Enhanced Via Metamaterial Resonators

机译:通过超材料谐振器增强的偏振相关的正常入射量子级联检测器。

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摘要

The design, fabrication, and characterization of a polarization-dependent normal incident quantum cascade detector coupled via complementary split-ring metamaterial resonators in the infrared regime are presented. The metamaterial structure is designed through three-dimensional finite-difference time-domain method and fabricated on the top metal contact, which forms a double-metal waveguide together with the metallic ground plane. With normal incidence, significant enhancements of photocurrent response are obtained at the metamaterial resonances compared with the 45° polished edge coupling device. The photocurrent response enhancements exhibit clearly polarization dependence, and the largest response enhancement factor of 165% is gained for the incident light polarized parallel to the split-ring gap.
机译:介绍了在红外条件下通过互补开环超材料谐振器耦合的偏振相关法向入射量子级联检测器的设计,制造和表征。通过三维有限差分时域方法设计超材料结构,并在顶部金属触点上制造超导体结构,该顶部金属触点与金属接地平面一起形成双金属波导。与45°抛光边缘耦合装置相比,垂直入射时,在超材料共振处光电流响应得到了显着增强。光电流响应增强明显表现出偏振依赖性,对于平行于开口环间隙偏振的入射光,最大响应增强因子达到165%。

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