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Amplifying quantum signals with Josephson tunnel junction circuits

机译:使用Josephson隧道结电路放大量子信号

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Amplifiers are crucial in every experiment carrying out a very sensi-tive measurement. However, they always degrade the information by adding noise. Quantum mechanics puts a limit on how small this degradation can be. Theoreti-cally, the minimum noise energy added by a phase-preserving amplifier to the signal it processes amounts at least to half a photon at the signal frequency. In this arti-cle, we show that we can build a practical microwave amplifying circuit that fulfills the minimal requirements to reach this quantum limit. The readout of solid-state qubits, and more generally, the measurement of very weak signals in various areas of science, can benefit from this new superconducting device. We also discuss how our circuit can be the basic buiding block for a variety of practical applications such as frequency conversion with and without photon number gain, dynamic cooling and production of entangled signal pairs.
机译:放大器在每个实验中都是至关重要的,其进行非常感应测量。但是,它们总是通过添加噪声来降低信息。量子力学限制了这种降级的小程度。 TheoreTi-Cly,相位保护放大器添加到信号IT的信号中的最小噪声能量至少在信号频率下至少为半光子的量。在本ARTI-CLI中,我们表明我们可以构建一个实用的微波放大电路,该电路符合达到这种量子限制的最小要求。固态Qubits的读数,更一般地,在各种科学领域中测量非常弱的信号,可以从这个新的超导装置中受益。我们还讨论了我们的电路如何成为各种实用应用的基本建设块,例如具有和无光子数增益,动态冷却和缠绕信号对的产生的变频器。

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