Capacities of quantum channels are fundamental quantities in the theory of quantum information. A desirable property is the additivity for a capacity. However, this cannot be achieved for a few quantities that have been established as capacity measures. Asymptotic regularization is generically necessary making the study of capacities notoriously hard. In this work, by a proper refinement of the physical settings of quantum communication, we prove additive quantities for quantum channel capacities that can be employed for quantum Shannon theorems. This refinement, only a tiny step away from the standard settings, is consistent with the principle of quantum theory, and it further demonstrates von Neumann entropy as the cornerstone of quantum information.
翻译:量子渠道的能力是量子信息理论中的基本数量。 理想的属性是能力的附加性。 但是,对于作为能力衡量尺度确定的少数数量来说,这不可能实现。 一般来说,对能力的正规化是必要的,这使得对能力的研究变得异常困难。 在这项工作中,通过适当改进量子通信的物理设置,我们证明量子渠道能力的添加性数量是可用于量子香农理论的量子渠道能力。 这一改进只是远离标准设置的微小一步,符合量子理论的原则,并进一步表明冯纽曼是量子信息的基石。