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Josephson junction microwave amplifier in self-organized noise compressionmode

机译:自组织噪声压缩中的Josephson结微波放大器模式

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摘要

The fundamental noise limit of a phase-preserving amplifier at frequency is the standard quantum limit . In the microwave range, the best candidates have been amplifiers based on superconducting quantum interference devices (reaching the noise temperature at 700 MHz), and non-degenerate parametric amplifiers (reaching noise levels close to the quantum limit at 8 GHz). We introduce a new type of an amplifier based on the negative resistance of a selectively damped Josephson junction. Noise performance of our amplifier is limited by mixing of quantum noise from Josephson oscillation regime down to the signal frequency. Measurements yield nearly quantum-limited operation, at 2.8 GHz, owing to self-organization of the working point. Simulations describe the characteristics of our device well and indicate potential for wide bandwidth operation.
机译:相位保持放大器在频率上的基本噪声极限是标准的量子极限。在微波范围内,最合适的选择是基于超导量子干扰设备的放大器(达到700 MHz的噪声温度)和非退化参数放大器(达到的噪声水平接近8 GHz的量子极限)。我们基于选择性阻尼的约瑟夫逊结的负电阻引入了一种新型放大器。我们的放大器的噪声性能受到从约瑟夫森振荡态到信号频率的量子噪声混合的限制。由于工作点的自组织,测量在2.8 GHz时产生了几乎量子受限的操作。仿真很好地描述了我们设备的特性,并指出了宽带操作的潜力。

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