H. H. Wills Physics Laboratory, University of Bristol, Bristol BS8 1TL, United Kingdom.
Proc Natl Acad Sci U S A. 2013 Oct 8;110(41):16373-7. doi: 10.1073/pnas.1304884110. Epub 2013 Sep 23.
Does information play a significant role in the foundations of physics? Information is the abstraction that allows us to refer to the states of systems when we choose to ignore the systems themselves. This is only possible in very particular frameworks, like in classical or quantum theory, or more generally, whenever there exists an information unit such that the state of any system can be reversibly encoded in a sufficient number of such units. In this work, we show how the abstract formalism of quantum theory can be deduced solely from the existence of an information unit with suitable properties, together with two further natural assumptions: the continuity and reversibility of dynamics, and the possibility of characterizing the state of a composite system by local measurements. This constitutes a set of postulates for quantum theory with a simple and direct physical meaning, like the ones of special relativity or thermodynamics, and it articulates a strong connection between physics and information.
信息在物理学基础中扮演重要角色吗?信息是一种抽象概念,使我们能够在选择忽略系统本身时,引用系统的状态。这仅在非常特殊的框架中才有可能,例如在经典或量子理论中,或者更一般地说,只要存在一个信息单位,使得任何系统的状态都可以在足够数量的这样的单位中可逆地编码。在这项工作中,我们展示了如何仅从具有适当属性的信息单位的存在,以及另外两个自然假设:动力学的连续性和可逆性,以及通过局部测量来描述复合系统状态的可能性,就可以推导出量子理论的抽象形式。这构成了一套具有简单而直接物理意义的量子理论假设,就像狭义相对论或热力学一样,并且在物理学和信息学之间建立了紧密的联系。