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首页> 外文期刊>Microelectronic Engineering >Development and characterization of cyclic olefin copolymer thin films and their dielectric characteristics as CPW substrate by means of Terahertz Time Domain Spectroscopy
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Development and characterization of cyclic olefin copolymer thin films and their dielectric characteristics as CPW substrate by means of Terahertz Time Domain Spectroscopy

机译:太赫兹时域光谱技术开发,表征环烯烃共聚物薄膜及其作为CPW衬底的介电特性

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We describe recent advances in the fabrication of cyclic olefin copolymer (COC) thin films and their electrical characteristics between 0.3 and 2 THz (terahertz). COC films were fabricated by dissolving the raw material in toluene at different concentrations. Three different techniques were used to fabricate thin solid films of COC: Spin Coating (SC), in-house developed technique Vacuum Solvent Desorption (VSD), and Thermic Solvent Desorption (TSD). Film characteristics such as roughness, thicknesses, and homogeneity were compared. These studies were performed to establish the technique that ensures the lowest roughness, highest homogeneity, and best control over thin film thickness. We also investigated the effect of film roughness and homogeneity on dispersion and losses related to the complex dielectric function epsilon(f). Then, we used Terahertz Time-Domain Spectroscopy (THz-TDS) characterization up to 2 THz to obtain the dielectric function of COC thin films fabricated by the three methods, and we compare these values with values in literature and state-of-the-art polymeric material BCB. We found that COC has low dispersion (the real part of the dielectric function is almost constant with frequency up to 2 THz), low losses regardless of the fabrication technique, and negligible losses due to roughness and non-homogeneity. Finally, we report the design of a coplanar waveguide, its loss characterization (0.1-0.6 THz), and the microfabrication process on a COC substrate. These results clearly demonstrate that COC films are serious contenders for developing low-loss and low-cost THz electronic devices and optoelectronics. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们描述了环烯烃共聚物(COC)薄膜的制造及其在0.3至2 THz(太赫兹)之间的电学特性的最新进展。通过将原料以不同浓度溶解在甲苯中制成COC膜。三种不同的技术用于制造COC固体薄膜:旋涂(SC),内部开发的技术真空溶剂脱附(VSD)和热溶剂脱附(TSD)。比较了薄膜的特性,例如粗糙度,厚度和均匀性。进行这些研究是为了建立确保最低粗糙度,最高均匀性和最佳控制薄膜厚度的技术。我们还研究了膜粗糙度和均质性对与复杂介电函数ε(f)相关的色散和损耗的影响。然后,我们使用高达2 THz的太赫兹时域光谱(THz-TDS)表征来获得通过三种方法制造的COC薄膜的介电功能,并将这些值与文献中的值和最新状态进行比较。高分子聚合材料BCB。我们发现,COC具有较低的色散(在高达2 THz的频率下,介电函数的实部几乎是恒定的),低损耗(与制造技术无关)以及由于粗糙度和非均质性而导致的损耗可忽略不计。最后,我们报告了共面波导的设计,损耗特征(0.1-0.6 THz)以及在COC衬底上的微细加工过程。这些结果清楚地表明,COC膜是开发低损耗,低成本THz电子器件和光电器件的重要竞争者。 (C)2018 Elsevier B.V.保留所有权利。

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