论文标题
2D时频空间中的量子光学合成
Quantum optical synthesis in 2D time-frequency space
论文作者
论文摘要
常规的光学合成,在不同时间模式下对光谱成分的相位和振幅的操纵正在革新超快的光学科学和计量。这些技术依赖于一维空间中时间和频域之间光场的傅立叶变换。但是,在这种处理中,不可能将光子之间的量子相关性纳入。在这里,我们将傅立叶合成扩展到高维空间以处理量子相关性,并通过在二维时间和频率空间中操纵双光子的两光子概率分布来进行实验证明。作为一种潜在的应用,我们显示了对宣告的单光子波包的操纵,这从来没有用传统的一维傅立叶光学元件来解释。我们的方法开辟了一条新的途径,以调整具有高维量子力处理的双孔波包的时间特征。我们预计,时间和频域中的光线处理如此高的尺寸处理可能会弥合量子光学和超快光学测量之间的研究场。
Conventional optical synthesis, the manipulation of the phase and amplitude of spectral components to produce an optical pulse in different temporal modes, is revolutionizing ultrafast optical science and metrology. These technologies rely on the Fourier transform of light fields between time and frequency domains in one-dimensional space. However, within this treatment it is impossible to incorporate the quantum correlation among photons. Here we expand the Fourier synthesis into high dimensional space to deal with the quantum correlation, and carry out an experimental demonstration by manipulating the two-photon probability distribution of a biphoton in two-dimensional time and frequency space. As a potential application, we show manipulation of a heralded single-photon wave packet, which is never explained by the conventional one-dimensional Fourier optics. Our approach opens up a new pathway to tailor the temporal characteristics of a biphoton wave packet with high dimensional quantum-mechanical treatment. We anticipate such high dimensional treatment of light in time and frequency domains could bridge the research fields between quantum optics and ultrafast optical measurements.