We propose the first correct special-purpose quantum circuits for preparation of Bell-diagonal states (BDS), and implement them on the IBM Quantum computer, characterizing and testing complex aspects of their quantum correlations in the full parameter space. Among the circuits proposed, one involves only two quantum bits but requires adapted quantum tomography routines handling classical bits in parallel. The entire class of Bell-diagonal states is generated, and a number of characteristic indicators, namely entanglement of formation, CHSH non-locality, steering and discord, are experimentally evaluated over the full parameter space and compared with theory. As a by-product of this work we also find a remarkable general inequality between "quantum discord" and "asymmetric relative entropy of discord": the former never exceeds the latter. We also prove that for all BDS the two coincide.
翻译:我们提出第一种正确的特殊量子电路,用于准备贝尔-对角状态,并在IBM 量子计算机上实施,描述和测试其整个参数空间量子相关性的复杂方面。在提议的电路中,一个仅涉及两个量子位,但需要经过调整的量子断层常规,同时处理古典位子。产生了整个贝尔-对角状态的整类,一些特征指标,即形成缠绕、CHSH非局部性、方向和不和,在全部参数空间上进行实验性评估,并与理论进行比较。作为这项工作的副产品,我们还发现“量相矛盾”和“非对称相对偏差”之间存在明显的普遍不平等:前者从未超过后者。我们还证明,对于所有BDS,两者是相同的。