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Bi-photon spectral correlation measurements from a silicon nanowire in the quantum and classical regimes

机译:硅和纳米线在量子和经典状态下的双光子光谱相关测量

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摘要

The growing requirement for photon pairs with specific spectral correlations in quantum optics experiments has created a demand for fast, high resolution and accurate source characterisation. A promising tool for such characterisation uses classical stimulated processes, in which an additional seed laser stimulates photon generation yielding much higher count rates, as recently demonstrated for a χ(2) integrated source in A. Eckstein et al. Laser Photon. Rev. >8, L76 (2014). In this work we extend these results to χ(3) integrated sources, directly measuring for the first time the relation between spectral correlation measurements via stimulated and spontaneous four wave mixing in an integrated optical waveguide, a silicon nanowire. We directly confirm the speed-up due to higher count rates and demonstrate that this allows additional resolution to be gained when compared to traditional coincidence measurements without any increase in measurement time. As the pump pulse duration can influence the degree of spectral correlation, all of our measurements are taken for two different pump pulse widths. This allows us to confirm that the classical stimulated process correctly captures the degree of spectral correlation regardless of pump pulse duration, and cements its place as an essential characterisation method for the development of future quantum integrated devices.
机译:在量子光学实验中,对具有特定光谱相关性的光子对的需求不断增长,这带来了对快速,高分辨率和精确源表征的需求。这种表征的有前途的工具使用经典的激发过程,其中额外的种子激光激发光子产生,产生更高的计数率,如最近在A. Eckstein等人的χ(2)集成源中所证明的那样。 。激光光子。修订版> 8 ,L76(2014年)。在这项工作中,我们将这些结果扩展到χ(3)集成源,首次在集成光波导硅纳米线中通过受激和自发四波混合直接测量光谱相关性测量之间的关系。 。我们直接确认由于较高的计数率而提速,并证明与传统的巧合测量相比,它可以在不增加测量时间的情况下获得额外的分辨率。由于泵浦脉冲的持续时间会影响频谱相关程度,因此我们对所有两个不同的泵浦脉冲宽度进行了所有测量。这使我们可以确认,无论泵浦脉冲持续时间如何,经典激发过程都能正确捕获光谱相关程度,并巩固其地位,成为未来量子集成器件发展的基本表征方法。

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