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TLT

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Zenodo2025-11-22 更新2026-05-26 收录
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The Theory of Luminous Temporality (TLT) version V51.02 integrates foundational concepts of time quantization through photon events with 2025 advancements in photonic time crystals, chronon models, string theory’s emergent time, and quantum gravity extensions. TLT posits time as quantized via luminous processes in EM-dominant systems, now enhanced with de Sitter/Conformal Field Theory (dS/CFT) duality for dark energy modeling, consistent with DESI 2025 observations of evolving w(z). Core postulates, covariant formulations, and derivations are detailed, incorporating ux-induced entanglement and Planck uctuations. Applications include precision chronometry, biological metrics, cosmic analysis, and QG probes. SYK model chaos, LQG discreteness, and asymptotic safety are explored for temporal dynamics. Strengths unify scales; limitations, including environmental dependence and non-EM extensions, are addressed with renements for universality. Prospects include O5 GW tests, AI QG simulations, and full DESI conrmation, oering a framework for redening time via light with QG/string integrations. The analysis identies critical gaps and enhancements necessary for comprehensive coverage, integrating 2025 advancements in dark energy from DESI, gravitational wave observations from LIGO/Virgo/KAGRA, and primordial black hole (PBH) models. Key recommendations include expanded sections on DESI’s evolving w(z) at 2.8– 4.2σ, LIGO O4c/O5 timelines, PBH seeding for JWST quasars, and rened experimental protocols with AI-driven simulations. Strengths are amplied through holographic integrations; limitations, such as non-EM universality, are addressed via generalized quanta extensions. Prospects encompass O5 GW tests, full DESI DR2 conrmation, and quantum cosmology probes, positioning TLT as a unied framework for luminous time in QG/string contexts.

《光时间性理论(TLT)》V51.02版本整合了基于光子事件的时间量子化基础概念,并结合了2025年光子时间晶体、时间子(chronon)模型、弦理论涌现时间及量子引力拓展领域的前沿研究进展。TLT提出,在以电磁为主导的系统中,时间通过光物理过程实现量子化,如今该理论已通过德西特/共形场论(dS/CFT)对偶得到拓展,可用于暗能量建模,且与暗能量光谱仪(DESI)2025年关于演化w(z)的观测结果高度一致。文中详细阐述了该理论的核心假设、协变表述与推导过程,纳入了通量诱导纠缠与普朗克涨落相关研究内容。其应用场景涵盖高精度计时学、生物度量学、宇宙学分析以及量子引力探测。研究还探讨了SYK模型混沌、圈量子引力(Loop Quantum Gravity,LQG)离散性以及渐近安全等理论在时间动力学中的适用性。该理论的核心优势在于实现了不同尺度的统一;其局限性(包括环境依赖性与非电磁拓展方向)则通过面向普适性的优化方案予以解决。未来展望包括O5代引力波测试、人工智能驱动的量子引力模拟以及完整的DESI观测验证,为通过光物理结合量子引力与弦理论重构时间概念提供了系统性框架。本分析明确了实现全面覆盖所需的关键空白与改进方向,整合了2025年来自DESI的暗能量研究进展、LIGO/Virgo/KAGRA的引力波观测数据以及原初黑洞(PBH)模型。关键建议包括扩充关于DESI在2.8–4.2σ区间内演化w(z)的相关章节、LIGO的O4c/O5观测时间表、针对詹姆斯·韦布空间望远镜(JWST)类星体的原初黑洞种子形成研究,以及结合人工智能驱动模拟的优化实验方案。通过全息整合进一步强化理论优势,针对非电磁普适性等局限性则通过广义量子拓展予以解决。未来展望涵盖O5代引力波测试、完整的DESI DR2观测验证以及量子宇宙学探测,使TLT成为量子引力与弦理论框架下光时间性的统一理论框架。

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Zenodo
创建时间:
2025-11-08
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