Active Terahertz Metamaterials Integrated with Metal–Semiconductor–Metal Varactor Diodes for Amplitude Modulation

Gyejung Lee, Ji Hyun Hwang, Jae‐Hyung Jang
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Abstract

Metal–semiconductor–metal (MSM) varactor diodes are integrated with a THz fishnet metamaterial with its resonance frequency in the terahertz (THz) frequency range. The electrically tunable capacitance enabled by MSM varactor diodes can shift the resonance frequency of the THz fishnet metamaterial and modulate the amplitude of transmitted THz waves. Conventional MSM varactor diodes can be represented by an equivalent circuit consisting of the series‐connected resistance and capacitance. When the frequency increases, the kinetic inductance associated with the two‐dimensional electron gas (2DEG) becomes significant in the THz frequency range. A very large resonance frequency shift as large as 0.57 THz is obtained due to the effect of the kinetic inductance change as well as the capacitance change in the THz metamaterial based on the fishnet structures. The fabricated THz fishnet metamaterial integrated with the MSM‐2DEG varactor diodes exhibits a modulation depth of 54.7% and an insertion loss of 3.32 dB at 0.66 THz.

Abstract Image

与用于调幅的金属-半导体-金属变容二极管集成的有源太赫兹超材料
金属-半导体-金属(MSM)变容二极管与太赫兹鱼网超材料集成在一起,其共振频率在太赫兹(THz)频率范围内。MSM 变容二极管产生的可调电容可移动太赫兹鱼网超材料的共振频率,并调制传输太赫兹波的振幅。传统的 MSM 变容二极管可以用串联电阻和电容组成的等效电路来表示。当频率增加时,与二维电子气体(2DEG)相关的动感在太赫兹频率范围内变得非常重要。在基于鱼网结构的太赫兹超材料中,由于动感变化和电容变化的影响,产生了高达 0.57 太赫兹的巨大共振频率偏移。与 MSM-2DEG 变容二极管集成的太赫兹鱼网超材料在 0.66 太赫兹时的调制深度为 54.7%,插入损耗为 3.32 dB。
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