论文标题
量子系统中二元假设检验的工作特性
Operating Characteristics for Binary Hypothesis Testing in Quantum Systems
论文作者
论文摘要
接收器操作特性(ROC)是经典二进制假设测试中检测和虚假警报概率之间的权衡的良好表示。我们使用经典的ROC作为量子系统中二元假设测试的两种操作特征的动机 - 决策操作特征(QDOC)和测量工作特征(QMOC)。两者都在我们建议的框架的背景下进行描述,该框架涵盖了经典和量子场景中二元假设检验的典型表述。我们解释了Helstrom在两个量子密度算子之间歧视的众所周知的结果,在此框架中,错误可能性最小。我们还提出了关于经典旁观框架和量子测量之间对应关系的先前结果的概括。该派生自然会导致一种建设性的程序,用于生成许多不同的测量结果,除了Helstrom的最佳测量值,有些标准和其他非标准,可以达到最小误差概率。
Receiver operating characteristics (ROCs) are a well-established representation of the tradeoff between detection and false alarm probabilities in classical binary hypothesis testing. We use classical ROCs as motivation for two types of operating characteristics for binary hypothesis testing in quantum systems -- decision operating characteristics (QDOCs) and measurement operating characteristics (QMOCs). Both are described in the context of a framework we propose that encompasses the typical formulations of binary hypothesis testing in both the classical and quantum scenarios. We interpret Helstrom's well-known result regarding discrimination between two quantum density operators with minimum probability of error in this framework. We also present a generalization of previous results regarding the correspondence between classical Parseval frames and quantum measurements. The derivation naturally leads to a constructive procedure for generating many different measurements besides Helstrom's optimal measurement, some standard and others non-standard, that achieve minimum probability of error.