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Entropy Balance in the Expanding Universe: A Novel Perspective

机译:扩大宇宙中的熵余额:一种小说的视角

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摘要

We describe cosmic expansion as correlated with the standpoints of local observers’ co-moving horizons. In keeping with relational quantum mechanics, which claims that quantum systems are only meaningful in the context of measurements, we suggest that information gets ergodically “diluted„ in our isotropic and homogeneous expanding Universe, so that an observer detects just a limited amount of the total cosmic bits. The reduced bit perception is due the decreased density of information inside the expanding cosmic volume in which the observer resides. Further, we show that the second law of thermodynamics can be correlated with cosmic expansion through a relational mechanism, because the decrease in information detected by a local observer in an expanding Universe is concomitant with an increase in perceived cosmic thermodynamic entropy, via the Bekenstein bound and the Laudauer principle. Reversing the classical scheme from thermodynamic entropy to information, we suggest that the cosmological constant of the quantum vacuum, which is believed to provoke the current cosmic expansion, could be one of the sources of the perceived increases in thermodynamic entropy. We conclude that entropies, including the entangled entropy of the recently developed framework of quantum computational spacetime, might not describe independent properties, but rather relations among systems and observers.
机译:我们描述了与当地观察员的共同移动视野的观点相关联的宇宙扩张。在与关系量子力学保持中,声称量子系统在测量的背景下只有有意义,我们建议信息在我们各向同性和均匀的扩张宇宙中令人眼花缭乱地“稀释”,使观察者只能检测到总额有限的总数宇宙位。减小的比特感知是由于观察者所在的扩展宇宙体积内的信息密度降低。此外,我们表明,通过关系机制,热力学的第二种定律可以与宇宙膨胀相关,因为在扩张宇宙中,当地观察者检测到的信息的减少伴随着贝肯斯坦的感知宇宙热力学熵的增加和少女原则。从热力学熵转换到信息的经典方案,我们建议据信激发当前宇宙膨胀的量子真空的宇宙常数可以是热力学熵的感知增加的源之一。我们得出结论,熵,包括最近开发的量子计算时尚框架的纠缠熵,可能没有描述独立的属性,而是在系统和观察者之间的关系。

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