Groupe d'Optique Quantique, Laboratoire Charles Fabry, Institut d'Optique, CNRS, Université Paris-Sud, Campus Polytechnique, RD 128, 91127 Palaiseau cedex, France.
Phys Rev Lett. 2010 Mar 26;104(12):123603. doi: 10.1103/PhysRevLett.104.123603. Epub 2010 Mar 24.
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.
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。