Compact silicon integrated devices, such as micro-ring resonators, have recently been demonstrated as efficient sources of quantum correlated photon pairs. The mass production of integrated devices demands the implementation of fast and reliable techniques to monitor the device performances. In the case of time-energy correlations, this is particularly challenging, as it requires high spectral resolution that is not currently achievable in coincidence measurements. Here we reconstruct the joint spectral density of photons pairs generated by spontaneous four-wave mixing in a silicon ring resonator by studying the corresponding stimulated process, namely stimulated four wave mixing. We show that this approach, featuring high spectral resolution and short measurement times, allows one to discriminate between nearly-uncorrelated and highly-correlated photon pairs.
翻译:集成装置的大规模生产要求采用快速可靠的技术来监测装置的性能。在时间-能源相关性方面,这特别具有挑战性,因为它需要高光谱分辨率,而在巧合测量中,这种分辨率目前无法实现。这里我们通过研究相应的刺激过程,即刺激四波混合,来重建自发四波混合在硅圈共振器中产生的光子对的联合光谱密度。我们表明,这种方法具有高光谱分辨率和较短的测量时间,允许对几乎不相干和高光子相对加以区分。