首页> 外文期刊>Russian physics journal >HIGGS BOSONS IN THE EARLY UNIVERSE. DIMENSIONALITY OF OUR SPACE. PART 1. STEADY STATE OF A HIGGS UNIVERSE WITH MAXIMUM ENTROPY
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HIGGS BOSONS IN THE EARLY UNIVERSE. DIMENSIONALITY OF OUR SPACE. PART 1. STEADY STATE OF A HIGGS UNIVERSE WITH MAXIMUM ENTROPY

机译:在早期的大学中占据一席之地。我们空间的维度。第1部分。具有最大熵的HIGGS大学的稳态

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摘要

Based on the concept of an initial Higgs Universe as one of the variants of a Multi-Universe with temperature distribution of massive nonrelativistic degenerate Higgs bosons over spaces with different dimensionalities and in line with their role as the mechanism of mass assignment within the framework of the law of conservation of energy, the ranges of values of the temperature and effective size of the Universe have been found, at which the superstring-generated quarks and also other massive particles of the Standard Model with nonzero spin and, consequently, the Universe itself, together with the set of particles of the Standard Model arising after the decay of the Higgs bosons, fall into the space with dimensionality t. Incidentally, the total thermodynamic functions of the Higgs universe have been found in all spaces.
机译:基于初始希格斯宇宙的概念作为多宇宙的变体之一,该多元宇宙的质量是非相对论的简并希格斯玻色子在不同维数空间上的温度分布,并且符合它们在物质框架内作为质量分配机制的作用根据能量守恒定律,已经发现了宇宙的温度和有效尺寸的取值范围,在该范围内,超弦产生的夸克以及具有非零自旋的标准模型的其他大质量粒子,以及由此产生的宇宙本身,随着希格斯玻色子的衰变而产生的标准模型粒子集一起落入维数为t的空间。偶然地,希格斯宇宙的全部热力学函数已经在所有空间中找到。

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