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Histories, dynamical laws, and initial conditions -Invariance under time-reversibility and its failure in Markov processes, with application to the second law of thermodynamics and the past hypothesis

机译:历史,动态法律和初始条件 - 在马尔可夫流程的时间可逆性及其失败下,应用于第二种热力学和过去的假设

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A Markov process can be invariant under time reversal and it also can exhibit a failure of invariance that is "uniformly positive." I show how each of these possibilities contributes to the project of deciding when a temporal sequence of states has a higher probability than its mirror image. Neither suffices, but a distinct property of the Markov process completes the project, namely the unconditional probabilities of two possible states of the system at the start of the process. The concept of forward time-translational invariance plays a role in the analysis, but I discuss backward time-translational invariance as well. I argue that the Markov framework helps clarify how the Past Hypothesis (the hypothesis that the universe began in a very low entropy state) is related to the Second Law of Thermodynamics, and how each is relevant to explaining why histories that exhibit entropy increase have higher probabilities than histories that exhibit entropy decline. I argue that the Past Hypothesis, if true, helps explain this fact about histories, but a far weaker hypothesis about the universe's initial state suffices to do so. (C) 2019 Elsevier Ltd. All rights reserved.
机译:马尔可夫进程可以在逆转时不变,它也可以表现出“统一正面”的不变性失败。我展示了每种可能性如何为决定何时何时具有比其镜像更高的概率。既不足够,但马尔可夫进程的明显属性完成了该项目,即系统在过程开始时系统的两个可能状态的无条件概率。前向时间转换不变性的概念在分析中发挥作用,但我也讨论了向后的时间翻译不变性。我认为马尔可夫框架有助于澄清过去的假设(宇宙在一个非常低的熵态开始的假设)是与热力学的第二律有关的,以及如何与解释为什么表现出熵增加的历史更高概率比表现出熵下降的历史。我认为过去的假设,如果是真的,有助于解释这个关于历史的这一事实,但对宇宙的初始国家的假设远远较弱,那么就足够了。 (c)2019年elestvier有限公司保留所有权利。

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