论文标题
使用硅光子芯片的环谐振光子对源的相位分辨的关节光谱断层扫描
Phase resolved joint spectra tomography of a ring resonator photon pair source using a silicon photonic chip
论文作者
论文摘要
光子量子技术的指数增长正在推动工具测量其信息载体质量的需求。最突出的之一是刺激的发射断层扫描(SET),它使用经典的相干场来测量具有高速和分辨率的光子对的关节光谱振幅(JSA)。虽然可以从单个强度测量中直接解决JSA的模量,但联合光谱阶段(JSP)的检索更具挑战性,并受到了较小的注意力。然而,作为芯片集成的微谐振器,具有丰富结构的JSP的一系列自发来源,具有丰富的结构,其相关性隐藏在强度域中。在这里,使用紧凑和可重新配置的硅光子芯片,首次测量了微环谐振器光子对源的复杂JSA。光子电路一致地激发了环和参考波导,并使用其刺激场形成的干涉图通过新型相重建技术来映射环JSP。该工具补充了到目前为止实施的传统庞大而复杂的方法,同时最大程度地减少了所需资源的集合。
The exponential growth of photonic quantum technologies is driving the demand of tools for measuring the quality of their information carriers. One of the most prominent is Stimulated Emission Tomography (SET), which uses classical coherent fields to measure the Joint Spectral Amplitude (JSA) of photon pairs with high speed and resolution. While the modulus of the JSA can be directly addressed from a single intensity measurement, the retrieval of the Joint Spectral Phase (JSP) is far more challenging and received minor attentions. However, a wide class of spontaneous sources of technological relevance, as chip integrated micro-resonators, have a JSP with a rich structure, that carries correlations hidden in the intensity domain. Here, using a compact and reconfigurable silicon photonic chip, it is measured for the first time the complex JSA of a micro-ring resonator photon pair source. The photonic circuit coherently excites the ring and a reference waveguide, and the interferogram formed by their stimulated fields is used to map the ring JSP through a novel phase reconstruction technique. This tool complements the traditionally bulky and sophisticated methods implemented so far, simultaneously minimizing the set of required resources.