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Symmetries of Light and Emergence of Matter

机译:光的对称性和物质的出现

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Objectives: This article will suggest a mathematical model for the strong connection between light and matter. Proposed properties of light will be shown to the birth matter at any level of complexity. Methods/Statistical Analysis: A conceptual analytical model is constructed to elaborate the structure of light and its link with the matter. Consistent with the genre of modern-day theoretical models in the realm of physics this model is exploratory at this stage and proceeds by first creating a symmetrical multi-layered model of light. The implicit quaternary symmetry is modeled by mathematical equations and shown to have a direct relationship on the emergence of matter at the varying scale of complexity. Findings: This article suggests a unification of light and matter. The unifying principle is an essential set of characteristics that is posited to be true of the nature of light that is also found to exist in the perceived reality of matter as it emerges from the field level, through the quantum, atom, and cell levels – hence at subsequent levels of complexity. The mathematical transformations that spawn layers of light are erected so as to allow infinite diversity to emerge from essential unity. Hence the diversity of matter and matter-based organizations is suggested to be an outcome of simple mathematical transformations that emanate from the four fundamental properties of light. A first transformation creates four sets each comprising of up to an infinite number of similar elements. A second transformation creates seeds organized through a combination of the elements from each set. Application/Improvements: Interpretations of Heisenberg’s Uncertainty principle and Schr?dinger’s Wave Equation. More detailed mappings of particles, of atoms, of molecular plans to the seed-type equations introduced in this article.
机译:目标:本文将为光与物质之间的牢固联系提出数学模型。提议的光的性质将以任何复杂程度显示给出生物质。方法/统计分析:构建概念分析模型以阐述光的结构及其与物质的联系。与物理学领域中现代理论模型的类型一致,该模型在此阶段处于探索阶段,首先创建对称的多层光模型,以进行下一步。隐式四元对称性由数学方程式建模,并显示出与复杂度变化的物质出现有直接关系。发现:本文建议光与物质的统一。统一原理是一组基本特征,被认为是真实的光的本质,当从场级,通过量子级,原子级和细胞级出现时,光的本质也存在于感知的现实中–因此处于随后的复杂性水平。建立产生光线层的数学转换,以使无限的多样性从基本的统一中出现。因此,物质和基于物质的组织的多样性被认为是源自光的四个基本属性的简单数学转换的结果。第一个转换创建四个集合,每个集合最多包含无限数量的相似元素。第二个转换通过组合每个集合中的元素来创建种子。应用/改进:海森堡的不确定性原理和薛定er的波动方程的解释。本文介绍的粒子,原子,分子计划到种子类型方程的更详细映射。

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