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Enhancing entanglement detection of quantum optical frequency combs via stimulated emission

机译:通过刺激发射提高量子光学频率梳理的缠结检测

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We investigate the performance of a certain nonclassicality identifier, expressed via integrated second-order intensity moments of optical fields, in revealing bipartite entanglement of quantum-optical frequency combs (QOFCs), which are generated in both spontaneous and stimulated parametric down-conversion processes. We show that, by utilizing that nonclassicality identifier, one can well identify the entanglement of the QOFC directly from the experimentally measured intensity moments without invoking any state reconstruction techniques or homodyne detection. Moreover, we demonstrate that the stimulated generation of the QOFC improves the entanglement detection of these fields with the nonclassicality identifier. Additionally, we show that the nonclassicality identifier can be expressed in a factorized form of detectors quantum efficiencies and the number of modes, if the QOFC consists of many copies of the same two-mode twin beam. As an example, we apply the nonclassicality identifier to two specific types of QOFC, where: (i) the QOFC consists of many independent two-mode twin beams with non-overlapped spatial frequency modes, and (ii) the QOFC contains entangled spatial frequency modes which are completely overlapped, i.e., each mode is entangled with all the remaining modes in the system. We show that, in both cases, the nonclassicality identifier can reveal bipartite entanglement of the QOFC including noise, and that it becomes even more sensitive for the stimulated processes.
机译:我们研究了一定的非农素标识符的性能,通过光学区域的集成二阶强度矩,在揭示了在自发和受激菌的参数下转换过程中产生的量子光学频率梳理(QoFC)的二分缠结。我们表明,通过利用该非计算性标识符,可以在不调用任何状态重建技术或卵差检测的情况下,直接从实验测量的强度矩直接识别QoFC的纠缠。此外,我们证明QoFC的刺激产生改善了非分化度标识符的这些场的缠结检测。另外,如果QoFC由相同的双模双光束的许多副本组成,则可以以探测器量子效率的分解形式和模式的数量的分解形式表示非分化度标识符。作为示例,我们将非Classicality标识符应用于两种特定类型的QoFC,其中:(i)QoFC由许多独立的双模式双光束组成,具有非重叠的空间频率模式,并且(ii)QoFC包含缠绕的空间频率完全重叠的模式,即每个模式都与系统中的所有剩余模式纠缠在一起。我们表明,在这两种情况下,非分化度标识符可以揭示QoFC的二分纠缠,包括噪声,并且对刺激的过程变得更加敏感。

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