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Generation and complete nondestructive analysis of hyperentanglement assisted by nitrogen-vacancy centers in resonators

机译:共振器中的氮空位中心辅助的超缠结的生成和完整无损分析

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We present two efficient schemes for the deterministic generation and the complete nondestructive analysis of hyperentangled Bell states in both the polarization and spatial-mode degrees of freedom (DOFs) of two-photon systems, assisted by the nitrogen-vacancy (NV) centers in diamonds coupled to microtoroidal resonators as a result of cavity quantum electrodynamics. With the input-output process of photons, two-photon polarization-spatial hyperentangled Bell states can be generated in a deterministic way and their complete nondestructive analysis can be achieved. These schemes can be generalized to generate and analyze hyperentangled Greenberger-Horne-Zeilinger states of multiphoton systems as well. Compared with previous works, these two schemes relax the difficulty of their implementation in experiment as it is not difficult to obtain the pi phase shift in single-sided NV-cavity systems, but difficult in single-sided quantum-dot-cavity systems. Moreover, our schemes do not require that the transmission for the uncoupled cavity is balanceable with the reflectance for the coupled cavity and they can be operated at room temperature. Our calculations show that these schemes can reach a high fidelity and efficiency with current technology, which may be a benefit to long-distance high-capacity quantum communication with two DOFs of photon systems.
机译:我们提出了两种有效的方案,用于在双光子系统的极化和空间模式自由度(DOF)中确定性生成和完全纠缠的超纠缠贝尔状态,并借助钻石中的氮空位(NV)中心由于腔量子电动力学而耦合到微环谐振器。通过光子的输入输出过程,可以确定性的方式生成两光子极化空间超纠缠的贝尔状态,并可以实现它们的完整无损分析。这些方案也可以被概括为产生和分析多光子系统的超纠缠格林伯格-霍恩-泽林格状态。与以前的工作相比,这两种方案减轻了在实验中实现它们的难度,因为在单面NV腔系统中获得pi相移并不困难,而在单面量子点腔系统中则很难。此外,我们的方案不需要非耦合腔的透射率与耦合腔的反射率平衡,并且它们可以在室温下工作。我们的计算表明,利用当前技术,这些方案可以达到较高的保真度和效率,这可能有利于与两个光子系统的自由度的长距离大容量量子通信。

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