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首页> 外文期刊>International Journal of Theoretical Physics >Spin Fidelity for Three-Qubit Greenberger-Horne-Zeilinger and W States Under Lorentz Transformations
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Spin Fidelity for Three-Qubit Greenberger-Horne-Zeilinger and W States Under Lorentz Transformations

机译:洛伦兹变换下三比特格林伯格-霍恩-策林格和W态的自旋保真度

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摘要

Constructing the reduced density matrix for a system of three massive spin- $frac{1}{2}$ particles described by a wave packet with Gaussian momentum distribution and a spin part in the form of GHZ or W state, the fidelity for the spin part of the system is investigated from the viewpoint of moving observers in the jargon of special relativity. Using a numerical approach, it turns out that by increasing the boost speed, the spin fidelity decreases and reaches to a non-zero asymptotic value that depends on the momentum distribution and the amount of momentum entanglement.
机译:为具有三个高质量自旋$ frac {1} {2} $粒子的系统构造降密度矩阵,用具有高斯动量分布的波包和GHZ或W状态形式的自旋部分描述自旋的保真度该系统的一部分是从狭义相对论行话中观察者的移动角度进行研究的。使用数值方法可知,通过提高加速速度,自旋保真度降低,并达到非零渐近值,该值取决于动量分布和动量缠结的量。

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