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GaN-based metamaterial terahertz bandpass filter design: tunability and ultra-broad passband attainment

机译:GaN基超材料太赫兹带通滤波器设计:可调性和超宽通带的获得

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Engineering metamaterial-based devices such as terahertz bandpass filters (BPFs) play a definitive role in advancement of terahertz technology. In this article, we propose a design procedure to obtain a considerably broadband terahertz BPF at a normal incidence; it shows promising filtering characteristics, including a wide passband of similar to 1.34 THz at a central frequency of 1.17 THz, a flat top in a broad band, and high transmission, compared to previous reports. Then, exploiting the voltage-dependent carrier density control in an AlGaN/GaN heterostructure with a Schottky gate configuration, we investigate the tuning of the transmission properties in a narrow-band terahertz filter. A combination of the ultra-wide, flat-top BPF in series with the tunable, narrow band filter designed in the current study offers the ability to tune the desired resonance frequency along with high out-of-band rejection and the suppression of unwanted resonances in a large spectral range. The proposed structure exhibits a frequency tunability of 103 GHz for a voltage change between -8 and 2 V, and a transmission amplitude change of similar to 0.51. This scheme may open up a route for the improved design of terahertz filters and modulators. (c) 2015 Optical Society of America
机译:基于工程超材料的设备(如太赫兹带通滤波器(BPF))在太赫兹技术的发展中起着决定性的作用。在本文中,我们提出一种设计程序,以在垂直入射时获得相当宽的太赫兹BPF。与以前的报道相比,它显示出令人鼓舞的滤波特性,包括在1.17 THz的中心频率处具有类似于1.34 THz的宽通带,宽带平坦的顶部以及高传输率。然后,在具有肖特基栅极配置的AlGaN / GaN异质结构中利用电压相关的载流子密度控制,我们研究了窄带太赫兹滤波器中传输特性的调整。本研究中设计的超宽平顶BPF与可调谐窄带滤波器串联使用,可以调谐所需的谐振频率,并具有很高的带外抑制和抑制有害谐振的能力在大光谱范围内。所提出的结构在-8至2 V之间的电压变化下表现出103 GHz的频率可调性,并且传输幅度变化类似于0.51。该方案可以为太赫兹滤波器和调制器的改进设计开辟一条途径。 (c)2015年美国眼镜学会

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