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实现一个非确定性光学无噪声放大器。

Implementation of a nondeterministic optical noiseless amplifier.

机构信息

Groupe d'Optique Quantique, Laboratoire Charles Fabry, Institut d'Optique, CNRS, Université Paris-Sud, Campus Polytechnique, RD 128, 91127 Palaiseau cedex, France.

出版信息

Phys Rev Lett. 2010 Mar 26;104(12):123603. doi: 10.1103/PhysRevLett.104.123603. Epub 2010 Mar 24.

Abstract

Quantum mechanics imposes that any amplifier that works independently on the phase of the input signal has to introduce some excess noise. The impossibility of such a noiseless amplifier is rooted in the unitarity and linearity of quantum evolution. A possible way to circumvent this limitation is to interrupt such evolution via a measurement, providing a random outcome able to herald a successful-and noiseless-amplification event. Here we show a successful realization of such an approach; we perform a full characterization of an amplified coherent state using quantum homodyne tomography, and observe a strong heralded amplification, with about a 6 dB gain and a noise level significantly smaller than the minimal allowed for any ordinary phase-independent device.

摘要

量子力学规定,任何独立作用于输入信号相位的放大器都必须引入一些额外的噪声。这种无噪声放大器的不可能性源于量子演化的幺正性和线性。一种规避这种限制的可能方法是通过测量来中断这种演化,提供一个随机的结果,能够预示一个成功的——无噪声的放大事件。在这里,我们成功地实现了这种方法;我们使用量子同调层析术对放大的相干态进行了全面的特征描述,并观察到了强烈的被预示的放大,增益约为 6dB,噪声水平明显小于任何普通的非相依赖器件所允许的最小值。

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