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首页> 外文期刊>International journal of quantum information >JRSP of three-particle state via three tripartite GHZ class in quantum noisy channels
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JRSP of three-particle state via three tripartite GHZ class in quantum noisy channels

机译:量子噪声通道中通过三个三方GHZ类的三粒子态JRSP

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摘要

We present a scheme for joint remote state preparation (JRSP) of three-particle state via three tripartite Greenberger-Horne-Zeilinger (GHZ) entangled states as the quantum channel linking the parties. We use eight-qubit mutually orthogonal basis vector as measurement point of departure. The likelihood of success for this scheme has been found to be 1/8. However, by putting some special cases into consideration, the chances can be ameliorated to 1/4 and 1. The effects of amplitude-damping noise, phase-damping noise and depolarizing noise on this scheme have been scrutinized and the analytical derivations of fidelities for the quantum noisy channels have been presented. We found that for 0.55 <= eta <= 1, the states conveyed through depolarizing channel lose more information than phase-damping channel while the information loss through amplitude damping channel is most minimal.
机译:我们提出了通过三个三方Greenberger-Horne-Zeilinger(GHZ)纠缠态作为连接双方的量子通道的三粒子态联合远程态制备(JRSP)的方案。我们使用八比特相互正交的基矢量作为出发点。已经发现该方案成功的可能性为1/8。但是,通过考虑一些特殊情况,可以将机会减少到1/4和1。已经仔细研究了振幅阻尼噪声,相位阻尼噪声和去极化噪声对该方案的影响,并分析了保真度的解析推导。已经提出了量子噪声通道。我们发现,对于0.55 <= eta <= 1,通过去极化通道传输的状态比相位衰减通道丢失的信息更多,而通过振幅衰减通道传输的信息的损耗则最小。

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