The Emergent Entangled Informational Universe

O. Denis
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引用次数: 1

Abstract

The dream of capturing the workings of the entire universe in a single equation or a simple set of equations is still pursued. A set of five new equivalent formulations of entropy based on the introduction of the mass of the information bit in Louis de Broglie's hidden thermodynamics and on the physicality of information, is proposed, within the framework of the emergent entangled informational universe model, which is based on the principle of strong emergence, the mass-energy-information equivalence principle and the Landauer’s principle. This model can explain various process as informational quantum processes such energy, dark matter, dark energy, cosmological constant and vacuum energy. The dark energy is explained as a collective potential of all particles with their individual zero-point energy emerging from an informational field, distinct from the usual fields of matter of quantum field theory, associated with dark matter as having a finite and quantifiable mass; while resolving the black hole information paradox by calculating the entropy of the entangled Hawking radiation, and shedding light on gravitational fine-grained entropy of black holes. This model explains the collapse of the wave function by the fact that a measure informs the measurer about the system to be measured and, this model is able to invalidate the many worlds interpretation of quantum mechanics and the simulation hypothesis.
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涌现的纠缠信息宇宙
用一个方程或一组简单的方程来描述整个宇宙的运行的梦想仍在继续。在基于强涌现原理、质能信息等价原理和朗道尔原理的涌现纠缠信息宇宙模型框架内,基于路易·德布罗意隐含热力学中信息位元质量的引入和信息的物理性,提出了一套新的熵的等效公式。该模型可以将能量、暗物质、暗能量、宇宙常数、真空能等各种过程解释为信息量子过程。暗能量被解释为所有粒子的集体势能,它们的个体零点能量来自一个信息场,不同于量子场论中通常的物质场,与具有有限和可量化质量的暗物质有关;通过计算纠缠霍金辐射的熵来解决黑洞信息悖论,揭示黑洞的引力细粒熵。这个模型解释了波函数的坍缩,通过一个测量告诉测量者关于被测量系统的事实,这个模型能够使量子力学的多世界解释和模拟假设无效。
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