从强子时代之前的Preon凝聚的物质-反物质不对称性

Richard B. Holmes
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摘要

假设Shupe和Harari的rishon preon理论,由具有电中性的质子、中子和电子组成的宇宙与c和preon数目相等是一致的。同样,一个由反质子、反中子和电中性的正电子组成的宇宙与c和质子的数量相等是一致的。因此,这种物质-反物质组合的任何组合也符合相同数量的c和质子以及整体电中性。提出观测到的重子-反子数密度与光子数密度之差~5 × 10-10是由于在普子凝聚成正常物质的过程中,物质和反物质之间的普子分配所致。考虑了三种日益严格和复杂的方法:1)由于波动而对应于普朗克温度的时间分配,2)由于preon键而对应于夸克形成的时间分配,以及3)对应于电弱尺度的时间分配。所有的方法都可以给出不对称的正确数量级,假设非平衡冻结和在自一致量子场论中preon凝聚中存在轻微且允许的电荷(C)不对称。这些方法显然绕过了Sakharov的重子非守恒条件,因为它们假设了在夸克形成之前存在的另一个物质水平(质子)。因此,质子可以为原始物质-反物质不对称提供一个基本的解释。提出了希格斯玻色子态与质子之间的关系。
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Matter-Antimatter Asymmetry from Preon Condensation Prior to the Hadron Epoch
A universe consisting of protons, neutrons, and electrons with electrical neutrality is consistent with an equal number of c and preons, assuming the rishon preon theory of Shupe and Harari. Similarly, a universe consisting of antiprotons, antineutrons, and positrons with electrical neutrality is consistent with an equal number of c and preons. Hence, any combination of such matter-antimatter compositions is also consistent with an equal number of c and preons and overall electrical neutrality. It is proposed that the difference observed in baryon-antibaryon number density relative to photon number density, ~5 × 10-10, is due to allocation of preons between matter and antimatter during preon condensation into normal matter. Three approaches of increasing rigor and complexity are considered: 1) an allocation at times corresponding to the Planck temperature due to fluctuations, 2) an allocation at times corresponding to quark formation due to preon bonding, and 3) an allocation at times corresponding to the electroweak scale. All approaches can give the correct order of magnitude of the asymmetry assuming out-of-equili-brium freeze-out and a slight and allowed charge (C) asymmetry in preon condensation in a self-consistent quantum field theory. Sakharov’s baryon non-conservation condition is evidently circumvented with these approaches, because they assume another level of matter (preons) which is present before quark formation. Thus, preons can provide an elementary explanation of primordial matter-antimatter asymmetry. A relationship between Higgs boson states and preons is proposed.
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