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Magnetically tunable superconducting resonators and filters

机译:磁可调超导谐振器和滤波器

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Compact, low-loss, tunable filters are needed for overload protection in the front end of many microwave-frequency systems. We have demonstrated magnetically tunable superconducting resonators and filters comprising microwave circuits coupled to ferrite substrates in monolithic structures using niobium at 4 K and hybrid resonator structures using YBCO at 77 K. A three-pole 1% bandwidth filter with 10-GHz center frequency and 1-dB insertion loss is described. In these devices the tunability results from changes in the magnetization of the ferrite rather than changes in the ferrimagnetic resonance frequency as in conventional YIG filters. Tunability data plotted us a function of magnetic field are fitted to the hysteresis theory developed previously and indicate that a tuning range of 13% is achievable. We have demonstrated switching times of less than one microsecond in structures incorporating closed magnetic paths in the form of a circular toroid
机译:在许多微波频率系统的前端,需要紧凑,低损耗,可调谐的滤波器来进行过载保护。我们已经演示了磁可调超导谐振器和滤波器,其中包括微波电路,该电路耦合到使用4 K铌的整体结构中的铁氧体衬底和使用77 K YBCO的混合谐振器结构的三极点1%带宽滤波器,中心频率为10 GHz,频率为1描述了-dB的插入损耗。在这些设备中,可调谐性是由铁氧体磁化强度的变化而不是像常规YIG滤波器中的亚铁磁共振频率的变化所导致的。根据磁场函数绘制的可调性数据适用于先前开发的磁滞理论,并表明可实现13%的可调范围。我们已经证明,在结合了环形磁环形式的闭合磁路的结构中,切换时间不到1微秒

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