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首页> 外文期刊>Scientific reports. >Optical scheme for generating hyperentanglement having photonic qubit and time-bin via quantum dot and cross-Kerr nonlinearity
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Optical scheme for generating hyperentanglement having photonic qubit and time-bin via quantum dot and cross-Kerr nonlinearity

机译:通过量子点和交叉克尔非线性产生具有光子量子位和时域的超纠缠的光学方案

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摘要

We design an optical scheme to generate hyperentanglement correlated with degrees of freedom (DOFs) via quantum dots (QDs), weak cross-Kerr nonlinearities (XKNLs), and linearly optical apparatuses (including time-bin encoders). For generating hyperentanglement having its own correlations for two DOFs (polarization and time-bin) on two photons, we employ the effects of optical nonlinearities using a QD (photon-electron), a parity gate (XKNLs), and time-bin encodings (linear optics). In our scheme, the first nonlinear multi-qubit gate utilizes the interactions between photons and an electron of QD confined in a single-sided cavity, and the parity gate (second gate) uses weak XKNLs, quantum bus, and photon-number-resolving measurement to entangle the polarizations of two photons. Finally, for efficiency in generating hyperentanglement and for the experimental implementation of this scheme, we discuss how the QD-cavity system can be performed reliably, and also discuss analysis of the immunity of the parity gate (XKNLs) against the decoherence effect.
机译:我们设计了一种光学方案,以通过量子点(QD),弱克尔非线性(XKNLs)和线性光学设备(包括时标编码器)生成与自由度(DOF)相关的超缠结。为了在两个光子上为两个自由度(偏振和时域)生成具有自己相关性的超纠缠,我们使用QD(光子-电子),奇偶门(XKNL)和时域编码来利用光学非线性效应(线性光学)。在我们的方案中,第一个非线性多量子位门利用了光子与局限在单侧腔中的QD电子之间的相互作用,而奇偶门(第二个门)则使用了弱XKNL,量子总线和光子数解析测量以纠缠两个光子的极化。最后,为了提高生成超纠缠度的效率以及该方案的实验实现,我们讨论了如何可靠地执行QD腔系统,还讨论了奇偶门(XKNL)对退相干效应的抗扰性分析。

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