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Fabrication and characterization of anisotropic dielectrics for low-loss microwave applications

机译:低损耗微波应用的各向异性电介质的制备和表征

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摘要

New magneto-photonic assembly designs for high-gain antennas require dielectrics with a significant anisotropy and low loss at GHz frequencies. This paper describes an approach to fabricate such dielectrics from ceramic laminates. These laminates consist of two ceramics with largely different permittivities and low dielectric losses. Alternating layers of commercially available alpha-Al2O3 and Nd-doped BaTiO3 were laminated using organic adhesives. Equivalent permittivity tensors and loss tangents were characterized using a resonant cavity-based approach, which was coupled with a finite-element method full-wave solver. Measured permittivity values were in good agreement with mean field predictions; a minimum loss tangent 1.1 x 10(-3) was obtained when using one-component epoxy (Loctite (R)-3982) adhesive. Application of two-component epoxy (M-bond 610) adhesive results in a slightly higher loss but better mechanical properties and machinability. These laminates were used to demonstrate high gain in a prototype antenna with 6 misaligned anisotropic dielectric layers.
机译:用于高增益天线的新型磁光子组件设计需要在GHz频率下具有显着各向异性和低损耗的电介质。本文描述了一种由陶瓷层压板制造这种电介质的方法。这些层压板由两种介电常数和低介电损耗的陶瓷组成。使用有机粘合剂将市售的α-Al2O3和掺Nd的BaTiO3的交替层进行层压。使用基于谐振腔的方法表征等效介电常数张量和损耗角正切,并结合有限元方法全波求解器。测得的介电常数值与平均场预测值非常吻合;当使用单组分环氧树脂(Loctite(R)-3982)粘合剂时,获得的最小损耗正切值为1.1 x 10(-3)。使用两组分环氧(M-bond 610)粘合剂会导致稍高的损耗,但机械性能和可加工性更好。这些层压板用于演示具有6个未对准的各向异性介电层的原型天线的高增益。

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