Department of Physics, ETH Zürich, Zürich, Switzerland.
Phys Rev Lett. 2011 Jun 3;106(22):220503. doi: 10.1103/PhysRevLett.106.220503. Epub 2011 Jun 1.
A wide range of experiments studying microwave photons localized in superconducting cavities have made important contributions to our understanding of the quantum properties of radiation. Propagating microwave photons, however, have so far been studied much less intensely. Here we present measurements in which we reconstruct the quantum state of itinerant single photon Fock states and their superposition with the vacuum by analyzing moments of the measured amplitude distribution up to fourth order. Using linear amplifiers and quadrature amplitude detectors, we have developed efficient methods to separate the detected single photon signal from the noise added by the amplifier. From our measurement data we have also reconstructed the corresponding Wigner function.
一系列研究局域在超导腔中的微波光子的实验,对我们理解光子的量子性质做出了重要贡献。然而,传播微波光子的研究目前还远没有那么深入。在这里,我们展示了通过分析测量的幅度分布的四阶矩,来重构传播的单光子福克态及其与真空态的叠加态的量子态的测量结果。通过使用线性放大器和正交幅度探测器,我们开发了有效的方法,将探测到的单光子信号与放大器引入的噪声分离开来。根据我们的测量数据,我们还重构了相应的维格纳函数。