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Genuine multiqubit entanglement and controlled teleportation

机译:真正的多量子纠缠和受控的隐形传态

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摘要

We construct a genuine (2N+1)-qubit entangled state to perform controlled teleportation of an arbitrary N-qubit state. The constructed state is a complementarity to the genuine 2N-qubit entangled state constructed by Yeo and Chua for N=2 [Phys. Rev. Lett. 96, 060502 (2006)] and by Chen, Zhu, and Guo for any N [Phys. Rev. A 74, 032324 (2006)]. We also quantify the entanglement of the state and classify it with the well-known GHZ and W states by means of the recently proposed generalized global entanglement and the associated auxiliary measures [Phys. Rev. A 74, 022314 (2006)]. Our study is of general importance with respect to exploring and exploiting the genuine multiqubit entanglement.
机译:我们构造一个真正的(2N + 1)-量子位纠缠态以执行任意N-量子位态的受控隐形传态。构造状态是Yeo和Chua在N = 2时构造的真正2N量子位纠缠态的补充。牧师96,060502(2006)]和Chen,Zhu和Guo对于任何N的研究[Phys。修订版A 74,032324(2006)]。我们还量化了状态的纠缠,并通过最近提出的广义全局纠缠和相关​​的辅助措施将其与众所周知的GHZ和W状态进行分类。 Rev.A 74,022314(2006)]。我们的研究对于探索和利用真正的多量子位纠缠具有普遍意义。

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