论文标题

从自发性参数下转换的实验性产生纠缠的纠缠

Experimental generation of polarization entanglement from spontaneous parametric down-conversion pumped by spatiotemporally highly incoherent light

论文作者

Li, Cheng, Braverman, Boris, Kulkarni, Girish, Boyd, Robert W.

论文摘要

从基本的角度来看,泵一致性对自发参数下转化(SPDC)产生的纠缠的影响非常重要,从基本的角度,也是从控制生成的纠缠状态的实际角度来理解。在这种情况下,众所周知,在没有选择后的情况下,在给定的自由度(DOF)中的泵连贯性对同一DOF中产生的纠缠施加了上限。但是,在不同的DOF中,泵在产生的纠缠中的跨影响并没有得到充分理解。在这里,我们通过实验研究了时空高度分(STHI)发光二极管(LED)泵对SPDC中产生的极化纠缠的影响。我们使用多模层收集纤维来减少选择后影响的量子状态断层扫描测量结果,同时同意为0.531 +/- 0.006,纯度为0.647 +/- 0.005,与我们的理论上预测的0.552和0.652的纯度非常吻合。因此,尽管使用STHI泵会导致输出两极分化两个Qubit状态的纠缠和纯度的减少,但SPDC使用STHI泵的生存能力仍然很重要,但重要的是:(i)STHI源无处不在,并且在较大的波长范围内比激光范围更广泛,并且可能是激进的(ii)跨(II)的跨性别量 - ii) - ii) - II) - ii) - ii) - ii) - 长距离量子通信方案由于其对散射的稳健性。

The influence of pump coherence on the entanglement produced in spontaneous parametric down-conversion (SPDC) is important to understand, both from a fundamental perspective, and from a practical standpoint for controlled generation of entangled states. In this context, it is known that in the absence of postselection, the pump coherence in a given degree of freedom (DOF) imposes an upper limit on the generated entanglement in the same DOF. However, the cross-influence of the pump coherence on the generated entanglement in a different DOF is not well-understood. Here, we experimentally investigate the effect of a spatiotemporally highly-incoherent (STHI) light-emitting diode (LED) pump on the polarization entanglement generated in SPDC. Our quantum state tomography measurements using multimode collection fibers to reduce the influence of postselection yield a two-qubit state with a concurrence of 0.531+/-0.006 and a purity of 0.647+/-0.005, in excellent agreement with our theoretically predicted concurrence of 0.552 and purity of 0.652. Therefore, while the use of an STHI pump causes reduction in the entanglement and purity of the output polarization two-qubit state, the viability of SPDC with STHI pumps is nevertheless important for two reasons: (i) STHI sources are ubiquitous and available at a wider range of wavelengths than lasers, and (ii) the generated STHI polarization-entangled two-photon states could potentially be useful in long-distance quantum communication schemes due to their robustness to scattering.

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