量子引力计算的能量传递和热力学

Laszlo Gyongyosi
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引用次数: 1

摘要

在量子引力环境中,过程和事件是因果不可分的,因为时间项和时间步长在非固定的因果结构中没有可解释的意义。在这里,我们研究了量子引力计算的能量传递和热力学。我们证明了一个非固定的因果关系刺激了量子引力环境和量子引力空间的独立局部系统之间的熵转移。我们证明了熵传递降低了贡献系统的熵,增加了量子引力环境的熵。我们在光滑柯西切片上揭示了量子引力环境的时空几何动态地适应于消失的因果关系。我们定义了相应的哈密顿量和量子引力环境的因果发展。
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Energy transfer and thermodynamics of quantum gravity computation

In a quantum gravity environment, the processes and events are causally non-separable because the term of time and the time-steps have no interpretable meaning in a non-fixed causality structure. Here, we study the energy transfer and thermodynamics of quantum gravity computations. We show that a non-fixed causality stimulates entropy transfer between the quantum gravity environment and the independent local systems of the quantum gravity space. We prove that the entropy transfer reduces the entropies of the contributing local systems and increases the entropy of the quantum gravity environment. We reveal on a smooth Cauchy slice that the space-time geometry of the quantum gravity environment dynamically adapts to the vanishing causality. We define the corresponding Hamiltonians and the causal development of the quantum gravity environment.

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来源期刊
Chaos, Solitons and Fractals: X
Chaos, Solitons and Fractals: X Mathematics-Mathematics (all)
CiteScore
5.00
自引率
0.00%
发文量
15
审稿时长
20 weeks
期刊最新文献
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