Time as an Emergent Property of Entropy
收藏DataCite Commons2025-06-01 更新2025-09-08 收录
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Here is a draft description designed to be scientifically informative and engaging for researchers in relevant fields:This paper introduces the Unified Time Theory (UTT), a novel framework proposing time as an emergent property fundamentally linked to the universe's increasing entropy. The UTT offers a potential resolution to the long-standing problem of time in quantum gravity and presents a path towards unifying General Relativity and Quantum Mechanics.The core of the theory is captured in a central equation that accurately predicts the cosmic timeline from the Planck epoch to the present, demonstrating a strong fit (χ2=1.18±0.12) with 30 data points from key cosmological datasets including Planck 2018, SHOES, DESI BAO, and cosmic chronometers. UTT successfully addresses the Hubble tension, yielding a predicted H0=(73.0±0.5) kms−1, and provides theoretically grounded mechanisms for the cosmological constant and baryon asymmetry.Leveraging principles from Loop Quantum Gravity and holographic concepts, the theory derives time from quantum state transitions. The paper outlines falsifiable predictions, such as specific CMB entropy correlations and modifications to black hole time dilation, which are testable with upcoming experiments like CMB-S4.This entropy-driven perspective offers a transformative paradigm for understanding fundamental physics and cosmology. Dive into this paper to explore a new view on the nature of time and its implications for the universe.
本文介绍统一时间理论(Unified Time Theory, UTT)——一种新颖框架,提出时间是与宇宙熵增存在根本关联的涌现性质。UTT为量子引力中长期存在的时间问题提供了潜在解决方案,并为统一广义相对论与量子力学指明了路径。该理论的核心凝练于一个中心方程,其可精准预测从普朗克时期(Planck epoch)到当前的宇宙时间线,并与来自Planck 2018、SHOES、DESI BAO及宇宙计时仪(cosmic chronometers)等关键宇宙学数据集的30个数据点呈现出强拟合性(χ2=1.18±0.12)。UTT成功解决了哈勃张力(Hubble tension)问题,预测哈勃常数H0=(73.0±0.5) kms⁻¹,并为宇宙学常数(cosmological constant)与重子不对称性(baryon asymmetry)提供了理论基础扎实的机制解释。该理论借鉴圈量子引力(Loop Quantum Gravity)原理与全息概念(holographic concepts),从量子态跃迁(quantum state transitions)中推导时间起源。论文还概述了可证伪预测(falsifiable predictions),例如特定的宇宙微波背景(CMB)熵关联及黑洞时间膨胀(black hole time dilation)的修正效应,这些预测可通过CMB-S4等未来实验进行验证。这种熵驱动视角为理解基础物理学与宇宙学提供了变革性范式。深入研读本文,探索关于时间本质及其对宇宙意义的全新见解。
提供机构:
figshare
创建时间:
2025-05-16



