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A 0.33-0.73 THz source based on phase-locked Josephson flux-flow oscillator

机译:基于锁相约瑟夫森流量传感器的0.33-0.73 THz源

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A new implementation for a terahertz flux-flow oscillator (FFO) based on a long Josephson junction is presented. The oscillator is integrated with the lens antenna on a single chip providing the THz emission in the open space, and with a harmonic mixer (HM) based on a SIS junction for a frequency and phase locking. We used the double slot antenna to output the emission from the planar transmission line to the open space, this antenna is coupled to the elliptical silicon lens forming narrow output beam of THz radiation. Two designs of antenna and matching structures coupled to the oscillator are developed and fabricated, the operating ranges 0.33 - 0.57 THz and 0.42 - 0.73 THz were obtained experimentally for these designs. The emission to open space was measured by an external superconducting receiver located in the separate cryogenic system.
机译:提出了一种基于长约瑟夫森结的太赫兹通量流量振荡器(FFO)的新实现。该振荡器与透镜天线集成在单个芯片上,该芯片可在空旷空间中提供THz发射,并集成有基于SIS结的谐波混频器(HM),用于频率和相位锁定。我们使用双缝隙天线将发射信号从平面传输线输出到开放空间,该天线耦合到椭圆形硅透镜,形成了太赫兹辐射的窄输出光束。开发并制造了两种天线设计和耦合到振荡器的匹配结构,通过实验获得了这些设计的工作范围0.33-0.57 THz和0.42-0.73 THz。开放空间的发射是由位于单独低温系统中的外部超导接收器测量的。

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