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The design and characterization of gap-coupled high-T/sub c/ superconducting microstrip patch antennas

机译:间隙耦合高T / sub c /超导微带贴片天线的设计与表征

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Thin-film high-temperature superconductors (HTS) have found use in many different applications since their discovery in 1986. Their popularity is due in great put to the advances in deposition technology, which has provided high-quality films on a variety of substrates. For the most part, the primary advantage of using superconducting materials in antenna systems is the reduction of the loss associated with transmission line matching circuits, filters, and feed networks particularly at microwave and millimeter-wave frequencies where ohmic losses begin to significantly affect the system's performance. For large antenna arrays with long, elaborate corporate feed networks, the use of HTS transmission lines can substantially increase the gain of the antenna arrays. The efficiency of the individual microstrip patch antennas is limited by the power dissipated by ohmic losses in the patch element and ground plane, the dielectric loss in the supporting substrate, and the undesirable excitation of surface-wave radiation. Because the surface-wave excitation increases with increasing substrate thickness and permittivity, the substrate upon which the microstrip antenna is patterned is typically electrically thin (less than 0.01/spl lambda//sub 0/). Unfortunately, there is a substantial decrease in the radiation efficiency on thin substrates, which is due to the conductor and dielectric loss. These losses can be significantly reduced by constructing the antenna from thin films of HTS materials on low-loss substrates. We summarize our efforts in investigating the properties of superconducting microstrip patch antennas.
机译:薄膜高温超导体(HTS)自1986年被发现以来,已在许多不同的应用中得到使用。它们的普及很大程度上归功于沉积技术的进步,该技术已在各种基板上提供了高质量的膜。在大多数情况下,在天线系统中使用超导材料的主要优势是减少了与传输线匹配电路,滤波器和馈电网络相关的损耗,特别是在微波和毫米波频率下,其中欧姆损耗开始显着影响系统的损耗表现。对于具有长而复杂的公司馈电网络的大型天线阵列,使用HTS传输线可以大大提高天线阵列的增益。各个微带贴片天线的效率受到贴片元件和接地层中的欧姆损耗,支撑基板中的介电损耗以及不希望的表面波辐射激发所消耗的功率的限制。因为表面波激发随着基底厚度和介电常数的增加而增加,所以在其上构图了微带天线的基底通常是电薄的(小于0.01 / splλ// sub 0 /)。不幸的是,由于导体和介电损耗,使薄基板上的辐射效率大大降低。这些损耗可以通过在低损耗基板上由HTS材料的薄膜构造天线来显着降低。我们总结了我们在研究超导微带贴片天线性能方面所做的努力。

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