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A Superconducting Terahertz Flux-Flow Oscillator: Estimation of the Emission Power to Open Space

机译:超导太赫兹磁通振荡器:估计开放空间的排放功率

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In this paper, we calculate power of electromagnetic wave emitted to open space by a terahertz (THz) source based on a Josephson flux-flow oscillator (FFO). The FFO is integrated with a transmitting slot antenna and a superconductor-insulator-superconductor (SIS) tunnel junction on a single chip, providing a frequency-tunable signal in a wide range of 200 - 700 GHz to open space. For non-calibrated power measurements, we used a highly sensitive silicon bolometer at 4.2 K. A small part of output FFO power is branched to the on-chip SIS-mixer and was estimated by absolute value by means of the Tien and Gordon photon-assisted tunneling theory. Using the absolute value, a calibrated power emitted to open space was estimated in the whole operating range. A power of from fractions to a few $mu mathrm{W}$ was obtained with a maximum of about $3 mu mathrm{W}$ at 330 GHz.
机译:在本文中,基于Josephse磁通流振荡器(FFO)计算Terahertz(THz)源发射到开放空间的电磁波的力量。 FFO与在单个芯片上的传输插槽天线和超导体 - 绝缘体 - 超导体(SIS)隧道结集成,在宽范围的200 - 700GHz到开路空间中提供频率可调信号。对于非校准功率测量,我们在4.2 K中使用了高度敏感的硅辐射线计。一小部分输出FFO功率分支到片上SIS混合器,并通过Tien和Gordon Photon的绝对值估计辅助隧道理论。使用绝对值,在整个操作范围内估计发射到开路空间的校准电力。从馏分到几个部分的力量 $ mu mathrm {w $ 获得了最多的 $ 3 mu mathrm {w $ 在330 GHz。

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