论文标题
具有集成光子学的高纯度脉冲挤压产生
High-Purity Pulsed Squeezing Generation with Integrated Photonics
论文作者
论文摘要
挤压光已经演变为一种强大的量子技术工具,范围从基于部分后选择技术的量子增强的传感和量子状态工程。脉冲产生的挤压光特别感兴趣,因为它可以提供准确的时间戳和物理定义的时间模式,在复杂的通信网络和大规模信息处理中,它们高度优先。但是,传统的单通构型中脉冲挤压的多模特征限制了输出状态的纯度,从而对其在量子技术中的应用产生了负面影响。在这封信中,我们提出了一种新的方法,以产生较高的时间纯度挤压脉冲。分析了基于光子腔中参数下转换的脉冲挤压。我们表明,挤压光的有效模式数接近统一。这样的高纯度挤压光可以通过广泛的参数和低泵功率来实现,从而提供了强大的方法来产生大规模的量子资源。
Squeezed light has evolved into a powerful tool for quantum technology, ranging from quantum enhanced sensing and quantum state engineering based on partial post-selection techniques. The pulsed generation of squeezed light is of particular interest, as it can provide accurate time stamp and physically defined temporal mode, which are highly preferred in complex communication networks and large-scale information processing. However, the multimode feature of pulsed squeezing in conventional single-pass configuration limits the purity of the output state, negatively impacting its application in quantum technology. In this Letter, we propose a new approach to generate pulsed squeezing with high temporal purity. Pulsed squeezing based on parametric down-conversion in photonic cavities is analyzed. We show that the effective mode number of the output squeezed light approaches unity. Such a high-purity squeezed light can be realized with broad parameters and low pump power, providing a robust approach to generate large-scale quantum resource.