论文标题
纠缠量子对的相互耐受效应
Mutual Intolerance Effect in Entangled Qubit Pairs
论文作者
论文摘要
在这里扩展了与路径纠缠光子对的最近提出的思想实验的分析,以旋转纠缠电子对。两种情况的详细比较显示了其监控的区别和相似性范围。一般结果与并发规则相矛盾,该规则指出,在不断变化的条件下,简单系统的密切相关的特征必须同时改变。取而代之的是,分析表明,系统在全球范围内与纠缠强度不断变化的同时,在本地层面上保持零。这种对BI光子和BI Fermions常见的效果可以命名为局部和全球连贯性之间的总互耐力。因此,我们可以将相互耐受性预测为所有对纠缠量子的一般效果,无论其物理性质如何。 关键词:BI光子,Bi fermion,纠缠,相关性,相干转移
Analysis of the recently proposed thought experiment with the path entangled photon pairs is extended here to spin entangled electron pairs. The detailed comparison of the two cases showed the range of distinctions and similarities in their monitoring. The general results contradict the Concurrency Rule stating that intimately linked characteristics of a simple system must change concurrently under changing conditions. Instead, the analysis showed that the systems coherence, while changing continuously with entanglement strength on the global scale, remains zero on the local level. This effect, common for bi photons and bi fermions, can be named total mutual intolerance between local and global coherence. We can thus predict mutual intolerance as a general effect for all pairs of entangled qubits regardless of their physical nature. Key words: Bi photon, bi fermion, entanglement, correlations, coherence transfer