Department of Physics, Technical University of Denmark, Fysikvej, 2800 Kongens Lyngby, Denmark.
Phys Rev Lett. 2013 Jul 19;111(3):033603. doi: 10.1103/PhysRevLett.111.033603. Epub 2013 Jul 17.
Interference of light fields plays an important role in various high-precision measurement schemes. It has been shown that superresolving phase measurements beyond the standard coherent state limit can be obtained either by using maximally entangled multiparticle states of light or using complex detection approaches. Here we show that superresolving phase measurements at the shot noise limit can be achieved without resorting to nonclassical optical states or to low-efficiency detection processes. Using robust coherent states of light, high-efficiency homodyne detection, and a deterministic binarization processing technique, we show a narrowing of the interference fringes that scales with 1/√[N] where N is the mean number of photons of the coherent state. Experimentally we demonstrate a 12-fold narrowing at the shot noise limit.
光场的干涉在各种高精度测量方案中起着重要作用。已经表明,通过使用最大纠缠多粒子态的光或使用复杂的检测方法,可以获得超出标准相干态极限的超分辨率相位测量。在这里,我们表明,在不求助于非经典光态或低效率检测过程的情况下,可以在散粒噪声极限下实现超分辨率相位测量。使用稳健的相干态光、高效率的同相检测和确定性二值化处理技术,我们展示了干涉条纹的变窄,其比例为 1/√[N],其中 N 是相干态的平均光子数。实验上,我们在散粒噪声极限下演示了 12 倍的变窄。