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Gain Stabilization of a Submillimeter SIS Heterodyne Receiver

机译:亚毫米SIS外差接收器的增益稳定

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We have designed a system to stabilize the gain of a submillimeter heterodyne receiver against thermal fluctuations of the mixing element. In the most sensitive heterodyne receivers, the mixer is usually cooled to 4 K using a closed-cycle cryocooler, which can introduce ~1% fluctuations in the physical temperature of the receiver components. We compensate for the resulting mixer conversion gain fluctuations by monitoring the physical temperature of the mixer and adjusting the gain of the IF amplifier that immediately follows the mixer. This IF power stabilization scheme, developed for use at the Submillimeter Array, a submillimeter interferometer telescope located on Mauna Kea, HI, routinely achieves a receiver gain stability of one part in 6000 (rms to mean). This is an order of magnitude improvement over the typical uncorrected stability of one part in a few hundred. Our gain stabilization scheme is a useful addition to superconductor-insulator-superconductor heterodyne receivers that are cooled using closed-cycle cryocoolers in which the 4-K temperature fluctuations tend to be the leading cause of IF power fluctuations.
机译:我们设计了一个系统来稳定亚毫米外差接收器的增益,以抵抗混合元件的热波动。在最敏感的外差接收器中,通常使用闭环冷冻冷却器将混合器冷却至4 K,这可能会导致接收器组件的物理温度出现约1%的波动。我们通过监视混频器的物理温度并调整紧接混频器的IF放大器的增益,来补偿混频器转换增益的波动。这种中频功率稳定方案是为在位于夏威夷州莫纳克亚(Mauna Kea)的亚毫米干涉仪望远镜Submmim​​eter Array使用而开发的,通常可以实现接收机增益稳定度的六分之一(均方根值)。与数百个零件中典型的未校正稳定性相比,这是一个数量级的改进。我们的增益稳定方案是对超导体-绝缘体-超导体外差接收器的有用补充,这些接收器使用闭环低温冷却器进行冷却,其中4-K温度波动往往是IF功率波动的主要原因。

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