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Noiseless amplification of weak coherent fields without external energy

机译:无需外部能量即可对弱相干场进行无噪声放大

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摘要

According to the fundamental laws of quantum optics, noise is necessarily added to the system when one tries to clone or amplify a quantum state. However, it has recently been shown that the quantum noise related to the operation of a linear phase-insensitive amplifier can be avoided when the requirement of a deterministic operation is relaxed. Nondeterministic noiseless linear amplifiers are therefore realizable. Usually nondeterministic amplifiers rely on using single photon sources. We have, in contrast, recently proposed an amplification scheme in which no external energy is added to the signal, but the energy required to amplify the signal originates from the stochastic fluctuations in the field itself. Applying our amplification scheme, we examine the amplifier gain and the success rate as well as the properties of the output states after successful and failed amplification processes. We also optimize the setup to find the maximum success rates in terms of the reflectivities of the beam splitters used in the setup. In addition, we discuss the nonidealities related to the operation of our setup and the relation of our setup with the previous setups.
机译:根据量子光学的基本定律,当人们试图克隆或放大量子态时,必然会在系统中增加噪声。然而,最近显示出,当放宽确定性操作的要求时,可以避免与线性相位不敏感放大器的操作有关的量子噪声。因此可以实现不确定的无噪声线性放大器。通常,不确定性放大器依赖于使用单光子源。相反,我们最近提出了一种放大方案,在该方案中,没有将外部能量添加到信号中,但是放大信号所需的能量来自于磁场本身的随机波动。应用我们的放大方案,我们检查了放大过程成功和失败之后的放大器增益和成功率以及输出状态的性质。我们还将优化设置,以根据设置中使用的分束器的反射率找到最大成功率。此外,我们讨论与设置操作有关的非理想性以及设置与以前的设置之间的关系。

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