Feynman图的总结:走向量子胶子动力学

IF 0.6 Q4 PHYSICS, MULTIDISCIPLINARY
B. Arneth
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引用次数: 0

摘要

把描述一个基本粒子的所有费曼图加起来,就能给出一个能量的度量,并由此得出该粒子的质量。此外,可以使用单个质量量子将费曼和转换为粒子质量。下面介绍并解释计算重子和介子质量的质量公式。这个公式包括计算可能的费曼图的数量,并将其乘以一个基本质量量子。质量公式是由电磁耦合常数(索默菲尔兹常数)和里德伯常数之间的联系推广而来的。这个质量公式为标准模型增加了一个能量参数化,这是迄今为止缺失的一个重要组成部分。然后,对这个质量公式进行解释,从而得出对基本粒子的解释,这种解释类似于对分子的解释。在这种解释中,胶子代替了基本粒子中的电子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Summing up the Feynman diagrams: Toward quantum gluonodynamics
Summing up all Feynman diagrams describing an elementary particle can provide a measure of the energy and, with it, the mass of that particle. Moreover, a single mass quantum can be used to convert the Feynman sum into the particle mass. In the following, a mass formula for the calculation of the baryon and meson masses is introduced and explained. This formula involves calculating the number of possible Feynman diagrams and multiplying it by an elementary mass quantum. The mass formula results from a generalization of the connection between the electromagnetic coupling constant alpha (Sommerfelds constant) and the Rydberg constant. This mass formula adds an energy parametrization to the standard model, an important component that has been missing to date. Afterward, this mass formula is interpreted, leading to an interpretation of the elementary particles that is similar to the way in which molecules are interpreted. In this interpretation, gluons take the place of electrons in the case of elementary particles.
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来源期刊
Physics Essays
Physics Essays PHYSICS, MULTIDISCIPLINARY-
自引率
83.30%
发文量
50
审稿时长
6-12 weeks
期刊介绍: Physics Essays has been established as an international journal dedicated to theoretical and experimental aspects of fundamental problems in Physics and, generally, to the advancement of basic knowledge of Physics. The Journal’s mandate is to publish rigorous and methodological examinations of past, current, and advanced concepts, methods and results in physics research. Physics Essays dedicates itself to the publication of stimulating exploratory, and original papers in a variety of physics disciplines, such as spectroscopy, quantum mechanics, particle physics, electromagnetic theory, astrophysics, space physics, mathematical methods in physics, plasma physics, philosophical aspects of physics, chemical physics, and relativity.
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