Light and Matter

Light and Matter
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光与物质

DOI:
10.1002/9781444308846.ch2
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发表时间:
2009
期刊:
Forensic Sciences
影响因子:
--
通讯作者:
K. Szaciłowski
K. Szaciłowski
中科院分区:
--
文献类型:
--
作者:
G. Stochel;M. Brindell;W. Macyk;Z. Stasicka;K. Szaciłowski

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物质是物理中光常数的守恒形式对称破缺守恒对称恢复生命的作用和力的联系四面体模型摘要本章所介绍的统一场论的概念基础可以简述如下本章所介绍的统一场论的概念基础可以简述如下:“诺特定理”指出,在一个多分量的场中,比如电磁场(或时空的度量场),只要找到一个对称,就会找到一个相关的守恒定律,反之亦然。在物质中,光的对称性由电荷和自旋守恒;在时空中,通过惯性和引力。光的原始能量以质量和动量的形式守恒;光的内在运动或熵驱动随时间和引力守恒。所有形式的能量,包括时空的守恒/熵域,都起源于光。在“大爆炸”期间,原始的高能光与时空的度量结构的不对称相互作用产生了物质;物质携带的电荷是创造它的光的对称(和熵)债务。因此,电荷不变性是电荷和对称守恒的一个重要推论,在我们的相对运动的时间(引力)度量中,通过“局部规范对称电流”(补偿场矢量的分量,如磁力和时间)来维持。“速度c”的不变性、“间隔”和因果性(电荷的度量类似物)同样是能量守恒的重要推论(狭义相对论和广义相对论的“洛伦兹不变性”)。电荷产生的力使物质系统恢复到最初的对称状态(光),(部分或全部)偿还物质的对称/熵债。物质对称性债的偿还(部分和完全)的例子有:1)化学反应和物质-反物质湮灭;2)放射性和质子衰变;3)恒星的核合成途径和霍金黑洞的“量子辐射”。确定光与物理中的4种电荷和力相关的破缺对称性是实现这些力概念统一的第一步。物质的电荷是光的对称债。
Introduction Matter is a Conserved Form of Light Constants of Physics Symmety Breaking Conservation Symmetry Restoration Role of Life Role and Linkage of the Forces Links The Tetrahedron Model Abstract The conceptual basis of the Unified Field Theory, as presented in these pages, can be briefly sketched as follows:The conceptual basis of the Unified Field Theory, as presented in these pages, can be briefly sketched as follows: "Noether's Theorem" states that in a multi-component field such as the electromagnetic field (or the metric field of spacetime), where one finds a symmetry one finds an associated conservation law, and vice versa. In matter, light's symmetries are conserved by charge and spin; in spacetime, by inertial and gravitational forces. Light's raw energy is conserved as mass and momentum; light's intrinsic motion or entropy drive is conserved as time and gravitation. All forms of energy, including the conservation/entropy domain of spacetime, originate as light. During the "Big Bang", the asymmetric interaction of primordial, high energy light with the metric structure of spacetime produces matter; matter carries charges which are the symmetry (and entropy) debts of the light which created it. Charge invariance is therefore an important corollary of charge and symmetry conservation, maintained in our temporal (gravitational) metric of relative motion by "local gauge symmetry currents" (compensating components of the field vectors, such as magnetism and time). The invariance of "velocity c", the "Interval", and causality (metric analogs of charge) are likewise important corollaries of energy conservation (the "Lorentz Invariance" of Special and General Relativity). Charges produce forces which act to return the material system toward its original symmetric state (light), paying (partially or completely) matter's symmetry/entropy debts. Repayment of matter's symmetry debt (partial and complete) is exampled by: 1) chemical reaction and matter-antimatter annihilation; 2) radioactivity and proton decay; 3) the nucleosynthetic pathway of stars and Hawking's "quantum radiance" of black holes. Identifying the broken symmetries of light associated with each of the 4 charges and forces of physics is the first step toward a conceptual unification of those forces. The charges of matter are the symmetry debts of light.