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Spacetime Pressure and Centripetal Push: A Novel Hypothesis on Gravitational Phenomena - Advanced Quantum Derivations, Loop Quantum Gravity, and String Theory Integration

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Zenodo2026-01-23 更新2026-05-26 收录
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This rigorously refined manuscript advances the ``Spacetime Pressure and Centripetal Push'' hypothesis by integrating advanced quantum derivations for spacetime pressure, detailed expositions of Loop Quantum Gravity (LQG) and String Theory, and enhanced precision, clarity, coherence, integration, and cohesion throughout. Quantum derivations meticulously model pressure from Planck-scale fluctuations, entropic corrections, and LQG's discrete geometry, supplemented with comprehensive step-by-step explanations. String Theory integration explores brane-world scenarios and holographic principles for emergent gravity, providing a higher-dimensional perspective. Expanded sections ensure a logical, interconnected flow, with derivations, comparisons, and examples seamlessly interlinked for a unified narrative. New sections address testable predictions, dissipation problems, and consistency with James Webb Space Telescope (JWST) data on early galaxies, offering valuable insights for scientists, specialists, reviewers, and researchers. A sophisticated Python simulation code is provided for modeling pressure-driven orbital dynamics, now enhanced with improved visualization, multi-particle simulations, and an implementation of Sobol sensitivity analysis using variance decomposition. Additional sections on Sobol sensitivity analysis, uncertainty quantification, and falsifiability provide a thorough evaluation of the model's robustness, aiding empirical scrutiny. Implications extend to cosmology, quantum unification, and novel predictions, supported by contemporary, accurately cited references from 2024-2025 with permanent links and identifiers.

本经过严格打磨的文稿推进了“时空压强与向心推力”假说的研究,通过整合针对时空压强的高级量子推导、对圈量子引力(Loop Quantum Gravity, LQG)与弦理论(String Theory)的详尽阐释,并全面优化了全文的精准度、清晰度、连贯性、整合性与衔接性。量子推导细致地对普朗克尺度涨落、熵修正以及圈量子引力的离散几何所产生的压强进行建模,并辅以详尽的分步解释。弦理论整合部分探索了膜世界场景与涌现引力的全息原理,提供了高维视角。新增的章节确保了逻辑连贯、前后呼应的行文脉络,将推导过程、对比分析与示例无缝串联,形成统一的叙事主线。新增章节还探讨了可检验预测、耗散问题,以及与詹姆斯·韦布空间望远镜(James Webb Space Telescope, JWST)早期星系观测数据的一致性,为科学家、专业学者、评审人员与研究人员提供了极具价值的见解。本文还提供了用于模拟压强驱动轨道动力学的高级Python仿真代码,该代码现已优化了可视化功能、多粒子仿真模块,并实现了基于方差分解的索伯尔敏感性分析(Sobol sensitivity analysis)。新增的关于索伯尔敏感性分析、不确定性量化与可证伪性的章节,对模型的鲁棒性进行了全面评估,有助于开展实证检验。本研究的推论涵盖宇宙学、量子统一理论与全新预测,并辅以2024至2025年的当代精准引用文献,且均附带永久链接与标识符。

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Zenodo
创建时间:
2026-01-23
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