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Time inversion in dynamical systems

机译:动力系统中的时间反演

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We consider the case of a dynamical system when the time evolution is generated by a non-hermitian superoperator on the states of the system. Assuming the left and right eigenvectors of this to provide complete basis sets, we propose a generalized scalar product which can be used to construct a monotonically changing functional of the state, a generalized entropy. Combining the time-dependent state with its time-reversed counterpart we can define the operation of time inversion even in this case of irreversible evolution. We require that both the forward and reversed time evolution can be obtained from a generalized action principle, and this demand serves to define the form of the time-reversed state uniquely. The work thus generalizes the quantum treatment from the unitary case to the irreversible one. We present a discussion of the approach and derive some of the direct consequences of our results. (C) 2003 Elsevier Inc. All rights reserved. [References: 37]
机译:我们考虑动态系统的情况,其中时间演化是由非埃尔米特超级运算符在系统状态上生成的。假设其左,右特征向量可提供完整的基集,我们提出了一种广义标量积,可用于构造状态的单调变化函数,即广义熵。结合时间相关状态及其时间反向状态,即使在不可逆演化的情况下,我们也可以定义时间反转的操作。我们要求可以从广义作用原理中获得正向和反向时间演化,并且这种需求可以唯一地定义时间反向状态的形式。因此,这项工作将量子处理从单一情况推广到不可逆的情况。我们对方法进行了讨论,并得出了结果的一些直接后果。 (C)2003 Elsevier Inc.保留所有权利。 [参考:37]

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