英文摘要 The dilemma of the "particle" concept in quantum mechanics stems from the profound contradiction between its point-like ontology and wave-like phenomena. This paper proposes a novel ontological solution: the fundamental constituent of the universe is the "soft energy packet"—a non-rigid, localized excitation of the universal unified energy field. Based on the author's proposed Bian's Unified Field Formula (BUFF) (Note: Its core quantitative form is the Fq formula, see Reference 5), we establish the mathematical framework of this ontology, where the "softness" (dispersion) and "shaping" (localization) of energy packets are governed by the global constraints of the field potential. This ontology provides a consistent physical explanation for phenomena such as double-slit interference, quantum tunneling, and entanglement swapping. Reanalysis of CERN double-slit experiment data and "Micius" satellite entanglement data shows that the ontology's prediction error ≤ 2%. More importantly, it derives two unique, testable new effects: the wave packet width-dependent tunneling probability, and the constraint gradient-dependent entanglement fidelity. This work achieves a leap from "phenomenon description" to "ontological construction, " providing a clear, self-consistent, and operable physical foundation for quantum mechanics. 中文摘要 量子力学中“粒子”概念的困境源于其点本体与波现象之间的深刻矛盾。本文提出一种新的本体论解决方案: 宇宙的基本构成单元是“软能量包”——一种非刚性的、局域化的宇宙统一能量场激发。基于作者提出的卞氏统一场公式 (BUFF) (注: 其核心定量形式为Fq公式, 参见参考文献5), 我们建立了该本体论的数学框架, 其中能量包的“软性” (弥散性) 与“定形” (局域化) 受场势能的全局约束支配。该本体论为双缝干涉、量子隧穿、纠缠交换等现象提供了一致的物理解释。重新分析欧洲核子研究组织 (CERN) 双缝实验与“墨子号”卫星纠缠实验数据, 结果显示本体论预测误差≤2%。更重要的是, 其推导出两个独特的可检验新效应: 波包宽度依赖的隧穿概率、约束梯度依赖的纠缠保真度。本文实现了从“现象描述”到“本体构建”的跨越, 为量子力学提供了清晰、自洽且可操作的物理基础。
Bian Zhenfeng (Tue,) studied this question.