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YBCO/ferrite low-loss microwave phase shifter

机译:YBCO /铁氧体低损耗微波移相器

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Microstrip-geometry phase shifters have limited use at microwave frequencies because of high insertion losses resulting from resistance in the metal conductors. We report a phase shifter fabricated from a YBa2Cu3O7-x microstrip line on LaAlO3 coupled to a ferrite toroid. The magnetic flux required for gyromagnetic interaction with the microwave signal is contained within the closed magnetic path of the ferrite toroid so that the superconductor encounters a very low external magnetic field. Initial measurements at 77 K using a meanderline structure to provide nonreciprocal operation have demonstrated greater than 700 deg of differential phase shift at 10 GHz in a compact structure 2.5 cm long by 0.5 cm wide. The insertion loss is smaller than 0.7 dB which yields a figure of merit considerably greater than 1000 deg/dB. The best conventional phase shifters have an estimated figure of merit of 300 deg/dB at 77 K. Potential radar system applications and improvements in the figure of merit are discussed.
机译:微带几何形状的移相器在微波频率上的使用受到限制,因为金属导体中的电阻会导致高插入损耗。我们报告了由LaAlO3上的YBa2Cu3O7-x微带线耦合到铁氧体环形线圈制成的移相器。与微波信号进行旋磁相互作用所需的磁通量包含在铁氧体磁环的闭合磁路内,因此超导体会遇到非常低的外部磁场。使用曲折线结构以提供不可逆的操作在77 K处进行的初始测量显示,在2.5厘米长,0.5厘米宽的紧凑型结构中,在10 GHz时,相移大于700度。插入损耗小于0.7 dB,其品质因数远大于1000 deg / dB。最好的传统移相器在77 K时具有300 deg / dB的品质因数。讨论了雷达系统的潜在应用和品质因数的改进。

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