论文标题
非线性波导中的反向传播光子对产生
Counter-propagating photon pair generation in a nonlinear waveguide
论文作者
论文摘要
已证明非线性散装晶体中的反传播参数转换过程具有独特的属性,可有效地窄带频率转换。在量子光学元件中,在波导中具有反向传播参数下转换过程(PDC)的光子对产生,信号和惰轮光子朝相反的方向传播,具有独特的独立于材料独立的工程功能。但是,实现反向传播的PDC需要具有极短的螺栓周期的准阶段匹配(QPM)。在这里,我们报告了在定期定期螺旋锂烯甲酸锂波导中产生反向传播的单光子对,并以与生成的波长相同的数量级,并产生。具有可分离的关节时间光谱行为的Biphoton State Bridge GHz和THZ带宽的单个光子。此外,它们允许直接观察带有最先进的光子计数器的预言单个光子的时间包膜。
Counter-propagating parametric conversion processes in non-linear bulk crystals have been shown to feature unique properties for efficient narrowband frequency conversion. In quantum optics, the generation of photon pairs with a counter-propagating parametric down-conversion process (PDC) in a waveguide, where signal and idler photons propagate in opposite directions, offers unique material-independent engineering capabilities. However, realizing counter-propagating PDC necessitates quasi-phase-matching (QPM) with extremely short poling periods. Here, we report on the generation of counter-propagating single-photon pairs in a self-made periodically poled lithium niobate waveguide with a poling period on the same order of magnitude as the generated wavelength. The single photons of the biphoton state bridge GHz and THz bandwidths with a separable joint temporal-spectral behavior. Furthermore, they allow the direct observation of the temporal envelope of heralded single photons with state-of-the art photon counters.