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首页> 外文期刊>International journal of quantum information >The fundamental connections between classical Hamiltonian mechanics, quantum mechanics and information entropy
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The fundamental connections between classical Hamiltonian mechanics, quantum mechanics and information entropy

机译:古典汉密尔顿力学,量子力学和信息熵之间的基本联系

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We show that the main difference between classical and quantum systems can be understood in terms of information entropy. Classical systems can be considered the ones where the internal dynamics can be known with arbitrary precision while quantum systems can be considered the ones where the internal dynamics cannot be accessed at all. As information entropy can be used to characterize how much the state of the whole system identifies the state of its parts, classical systems can have arbitrarily small information entropy while quantum systems cannot. This provides insights that allow us to understand the analogies and differences between the two theories.
机译:我们表明,在信息熵方面可以理解经典和量子系统之间的主要区别。 可以考虑古典系统,其中可以通过任意精度知道内部动态的内部动力学,而量子系统可以被认为是根本无法访问内部动态的。 由于信息熵可用于表征整个系统的状态识别其部件的状态,经典系统可以在量子系统不能进行任意小的信息熵。 这提供了见解,使我们能够了解两个理论之间的类比和差异。

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