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Optimization of quantum states for signaling across an arbitrary qubit noise channel with minimum-error detection

机译:通过最小误差检测优化任意量子比特噪声信道上的信令量子状态

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摘要

For discrimination between two signaling states of a qubit, the optimal detector minimizing the probability of error is applied to the situation where detection has to be performed from a noisy qubit affected by an arbitrary quantum noise separately characterized. With no noise, any pair of orthogonal pure quantum states is optimal for signaling as it enables error-free detection. In the presence of noise, detection errors are in general inevitable, and the pairs of signaling states best resistant to such noise are investigated. With an arbitrary quantum noise, modeled as a channel affecting the qubit, and when minimum-error detection is performed from the output, a characterization of the optimal input signaling pairs and of their best detection performance is obtained through a simple maximization of a quadratic scalar criterion in three constrained real variables. This general characterization enables to establish that such optimal signaling pairs are always made of two orthogonal pure quantum states, but that they must be specifically selected to match the noise properties and prior probabilities. The maximization is explicitly solved for several generic quantum noise processes relevant to the qubit, such as the squeezed generalized amplitude damping noise which describes interaction with a thermal bath representing a decohering environment and which includes as special cases both the generalized and the regular amplitude damping noise processes, and such as general Pauli noise processes which include for instance the bit-flip noise and the depolarizing noise. Also, examined is the situation of one imposed (pure or mixed) signaling state, for which the other associated signaling state optimal for noisy detection is determined as a pure state, yet not necessarily orthogonal.
机译:为了区分量子比特的两个信令状态,将最小化错误概率的最佳检测器应用于必须根据受单独表征的任意量子噪声影响的嘈杂量子比特执行检测的情况。在没有噪声的情况下,任何一对正交的纯量子态对于信号传输都是最佳的,因为它可以实现无错误检测。在存在噪声的情况下,检测错误通常是不可避免的,并且研​​究了对这种噪声最能抵抗的一对信号状态。利用建模为影响量子位的通道的任意量子噪声,当从输出执行最小错误检测时,可以通过简单地最大化二次标量来获得最佳输入信号对及其最佳检测性能的表征。在三个约束实变量中的标准。该一般特征使得能够确定这样的最优信令对总是由两个正交的纯量子态构成,但是必须特别选择它们以匹配噪声特性和先验概率。对于与量子位相关的几种通用量子噪声过程,明确地解决了极大化问题,例如压缩的广义振幅阻尼噪声,该噪声描述了与代表解耦环境的热浴之间的相互作用,并且在特殊情况下,广义和常规振幅阻尼噪声处理,例如一般的Pauli噪声处理,例如包括位翻转噪声和去极化噪声。同样,检查一种施加的(纯或混合)信令状态的情况,对于该情况,对于噪声检测最佳的另一相关联的信令状态被确定为纯状态,但不一定是正交的。

著录项

  • 作者

    F. Chapeau-Blondeau;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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