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A Dynamic-Logical Perspective on Quantum Behavior

机译:量子行为的动态逻辑视角

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In this paper we show how recent concepts from Dynamic Logic, and in particular from Dynamic Epistemic logic, can be used to model and interpret quantum behavior. Our main thesis is that all the non-classical properties of quantum systems are explainable in terms of the non-classical flow of quantum information. We give a logical analysis of quantum measurements (formalized using modal operators) as triggers for quantum information flow, and we compare them with other logical operators previously used to model various forms of classical information flow: the “test” operator from Dynamic Logic, the “announcement” operator from Dynamic Epistemic Logic and the “revision” operator from Belief Revision theory. The main points stressed in our investigation are the following: (1) The perspective and the techniques of “logical dynamics” are useful for understanding quantum information flow. (2) Quantum mechanics does not require any modification of the classical laws of “static” propositional logic, but only a non-classical dynamics of information. (3) The main such non-classical feature is that, in a quantum world, all information-gathering actions have some ontic side-effects. (4) This ontic impact can affect in its turn the flow of information, leading to non-classical epistemic side-effects (e.g. a type of non-monotonicity) and to states of “objectively imperfect information”. (5) Moreover, the ontic impact is non-local: an information-gathering action on one part of a quantum system can have ontic side-effects on other, far-away parts of the system.
机译:在本文中,我们展示了如何使用动态逻辑(尤其是动态认知逻辑)的最新概念来建模和解释量子行为。我们的主要论点是,量子系统的所有非经典性质都可以用量子信息的非经典流来解释。我们对量子测量(使用模态运算符进行形式化)进行逻辑分析,以作为量子信息流的触发因素,并将它们与之前用于建模各种形式的经典信息流的其他逻辑运算符进行比较:Dynamic Logic的“ test”运算符,动态认知逻辑的“公告”运算符和信度修订理论的“修订”运算符。我们的研究重点是以下几点:(1)“逻辑动力学”的观点和技术对于理解量子信息流是有用的。 (2)量子力学不需要对“静态”命题逻辑的经典定律进行任何修改,而仅需要信息的非经典动力学即可。 (3)这种非经典特征的主要特征是,在量子世界中,所有信息收集行为都有一些本体上的副作用。 (4)这种本体的影响会依次影响信息流,从而导致非经典的认知副作用(例如,一种非单调性)和“客观上不完美的信息”状态。 (5)而且,本体的影响是非局部的:对量子系统某一部分的信息收集可能会对系统的其他遥远部分产生本体的副作用。

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