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Detection scheme for quantum multiple access channel with noisy coherent state

机译:噪声相干态量子多路访问信道的检测方案

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Quantum detection techniques based on multi-access quantum channel promise efficient quantum optimal solutions to quantum multi-user detection. "Discrete coherent state"(DCS) approximation method is a practical model for solving the mixed-state detection problem. Generally, the input states are pure states, while the output states are turned out to be mixed states corrupted by the noise in quantum channel. In this paper, we consider the detection scheme with DCS approximation in a quantum multiple access channel. We deduce the error probability of symbol rate of the detection algorithm with DCS detection scheme in multi-user detection fashion. By numerical simulations, we analyze and compare the performance of this detection scheme with different degree approximation. It is shown that this detection scheme is available for the quantum multi-user detection. For a normal noise, say jV=0.1, we will get the 10−3 when number of photons Ns go to 18.
机译:基于多路访问量子通道的量子检测技术有望为量子多用户检测提供高效的量子优化解决方案。 “离散相干态”(DCS)近似方法是解决混合态检测问题的实用模型。通常,输入状态是纯状态,而输出状态被证明是被量子通道中的噪声破坏的混合状态。在本文中,我们考虑了在量子多路访问信道中采用DCS近似的检测方案。通过DCS检测方案,以多用户检测的方式推导了检测算法符号率的错误概率。通过数值模拟,我们分析和比较了该检测方案在不同程度近似下的性能。结果表明,该检测方案可用于量子多用户检测。对于正常噪声,例如jV = 0.1,当光子数Ns达到18时,我们将得到10 −3

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