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基于悬浮光栅的具有高Q值和可调性的太赫兹透射型全介质导模共振滤波器。

THz transmissive all-dielectric guided-mode resonance filter with high Q and tunability using suspended gratings.

作者信息

Zhou Pan, Sun Guotao, Wang Qingkang, Wu Kaiyu

出版信息

Appl Opt. 2023 May 20;62(15):3982-3988. doi: 10.1364/AO.489476.

Abstract

Most currently available THz narrowband filters employ metal that introduces loss, or work in reflection mode, which limits their scope of application. Here, a transmissive all-dielectric guided-mode resonance filter in the THz region is presented. It contains a suspended grating layer and a waveguide layer, separated by an air layer. A fabrication process of the filter is proposed. Simulation results show that the designed filter exhibits excellent transmittance of ∼97.5 with a high value of ∼1500 at 1.64 THz. Furthermore, this transmission peak is surrounded by a wide and flat sideband with width of ∼0.75 and transmission below 10%. Moreover, tunability of the filter is realized by geometric scaling and by varying the thickness of the air layer. Using geometric scaling, the filtering frequency can be widely tuned from 0.54 to 1.64 THz, covering the 625-725 and 780-910 GHz wireless communication windows. Additionally, fine tuning achieved by varying the air layer thickness could be used to compensate for a tiny shift of the designed filtering frequency caused by errors introduced in the fabrication process. The value can be further boosted to ∼11,500 by adding another layer of waveguide. Due to its transmissive nature and high- resonant mode with a wide sideband and tunability, the presented filter exhibits great potential in THz applications such as spectroscopy, imaging, and communication.

摘要

目前大多数可用的太赫兹窄带滤波器采用会引入损耗的金属,或者工作在反射模式,这限制了它们的应用范围。在此,提出了一种太赫兹区域的透射型全介质导模共振滤波器。它包含一个悬浮光栅层和一个波导层,中间隔着一个空气层。提出了该滤波器的制造工艺。仿真结果表明,所设计的滤波器在1.64太赫兹处具有约97.5%的优异透过率和约1500的高品质因数。此外,该传输峰值被一个宽且平坦的边带包围,边带宽度约为0.75太赫兹,传输率低于10%。而且,通过几何缩放和改变空气层厚度实现了滤波器的可调谐性。利用几何缩放,滤波频率可在0.54至1.64太赫兹范围内广泛调谐,覆盖625 - 725吉赫兹和780 - 910吉赫兹无线通信窗口。此外,通过改变空气层厚度实现的微调可用于补偿制造过程中引入的误差导致的设计滤波频率的微小偏移。通过添加另一层波导,品质因数可进一步提高到约11500。由于其透射特性、具有宽边带和可调谐性的高共振模式,所提出的滤波器在太赫兹应用如光谱学、成像和通信中展现出巨大潜力。

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