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Long-term transmission of entangled photons from a single quantum dot over deployed fiber

机译:来自单个量子点的纠缠光子在已部署光纤上的长期传输

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Entangled light sources are considered as core technology for multiple quantum network architectures. Of particular interest are sources that are based on a single quantum system as these offer intrinsic security due to the sub-Poissonian nature of the photon emission process. This is important for applications in quantum communication where multi-pair emission generally compromises performance. A large variety of sources has been developed, but the generated photons remained far from being utilized in established standard fiber networks, mainly due to lack of compatibility with telecommunication wavelengths. In this regard, single semiconductor quantum dots are highly promising photon pair sources as they can be engineered for direct emission at telecom wavelengths. In this work we demonstrate the feasibility of this approach. We report a week-long transmission of polarization-entangled photons from a single InAs/GaAs quantum dot over a metropolitan network fiber. The photons are in the telecommunication O-band, favored for fiber optical communication. We employ a polarization stabilization system overcoming changes of birefringence introduced by 18.23?km of installed fiber. Stable transmission of polarization-encoded entanglement with a high fidelity of 91% is achieved, facilitating the operation of sub-Poissonian quantum light sources over existing fiber networks.
机译:纠结光源被视为多种量子网络体系结构的核心技术。特别令人感兴趣的是基于单个量子系统的源,因为由于光子发射过程的亚泊松性质,这些源提供了固有的安全性。这对于量子通信中多对发射通常会影响性能的应用非常重要。已经开发了多种光源,但是所产生的光子仍远未用于已建立的标准光纤网络中,这主要是由于缺乏与电信波长的兼容性。在这方面,单个半导体量子点是高度有前途的光子对源,因为它们可以被设计用于电信波长的直接发射。在这项工作中,我们证明了这种方法的可行性。我们报告了从一个InAs / GaAs量子点通过城域网络光纤传输的极化纠缠光子的一周时间。光子在电信O波段中,适合光纤通信。我们采用了一种偏振稳定系统,以克服由18.23?km的已安装光纤引起的双折射变化。实现了高保真度91%的偏振编码纠缠的稳定传输,从而简化了现有光纤网络上的亚泊松量子光源的操作。

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