高能质子-质子相互作用与重子暗物质

Q2 Physics and Astronomy Letters in High Energy Physics Pub Date : 2022-11-14 DOI:10.31526/LHEP.2023.378
O. Piskounova
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引用次数: 0

摘要

在LHC测量到的正超子产生不对称性是串结在HE质子-质子相互作用中重子产生时重子电荷转移中作用的真实证明。为了发明出重子电荷为零的中性重粒子作为暗物质的候选者,有必要回到强子产生物理的对偶拓扑单元化时代,在这个时代,正电子交换随着能量的增长而起主导作用。在HE质子-质子碰撞中,玻色子交换的拓扑表示是一个覆盖着夸克胶子网的圆柱体。考虑到三个胶子(SJ)的结具有正重子数,而反结(antiSJ)具有负重子电荷,具有零重子电荷的中性自连接重子构型是一个由离散数目的六边形覆盖的环面,每个六边形具有3个串结和3个反结顶点。本文讨论了在p-p对撞机的碰撞、宇宙粒子与大气的碰撞以及在活动星系核的相对论喷流中观测到这种重子托里的可能性。
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High Energy Proton-Proton Interactions and Baryonium Dark Matter
The positive hyperon production asymmetries that have been measured at LHC are real demonstrations of string junction role in the baryon charge transfer at baryon production in HE proton-proton interactions. In order to invent the neutral heavy particle with zero baryon charge as a candidate for Dark Matter, it is necessary to turn back to the times of dual topological unitarization of hadroproduction physics, where the pomeron exchanges play leading role with the growing energies. The topological presentation of pomeron exchange at the HE proton-proton collision is a cylinder that is covered with a quark-gluon net. Taking into account that the junction of three gluons (SJ) has the positive baryon number, as well as the antijunction (antiSJ) is of negative baryon charge, the neutral self-connected baryonium configuration with zero baryon charge is a torus that is covered by a discrete number of hexagons with 3 string junction and 3 antijunction vertices each. The possibilities to observ such baryonium tori are discussed in this paper for three cases: collisions at p-p collider, the cosmic particle collisions with the atmosphere, and in the relativistic jets at the Active Galaxy Nuclei as well.
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来源期刊
Letters in High Energy Physics
Letters in High Energy Physics Physics and Astronomy-Nuclear and High Energy Physics
CiteScore
1.20
自引率
0.00%
发文量
4
审稿时长
12 weeks
期刊最新文献
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