论文标题

强烈互动和黑暗宇宙的新物理

New physics of strong interaction and Dark Universe

论文作者

Beylin, V., Khlopov, M., Kuksa, V., Volchanskiy, N.

论文摘要

黑暗宇宙物理学的历史可以从早期宇宙的过程中追溯到暗物质和能量的现代统治地位。在这里,我们回顾了强烈相互作用在新物理学的宇宙学效应中的可能非平凡作用。在普通的QCD相互作用的情况下,存在新的稳定有色颗粒(例如新稳定夸克)的存在会导致新的异国物质形式,其中一些可能是暗物质的候选者。类似QCD的新型强相互作用会导致新的稳定的复合候选者受QCD样限制。我们特别强调了新稳定的黑龙与普通物质之间相互作用的影响,形成宇宙射线异常形式的物质形式和异国情调的物质形式,例如稳定的分数粒子。这些作用与高能量中微子和宇宙射线特征的可能相关性为研究强烈相互作用的新物理学通过间接的多通间剂天体物理探针开辟了道路。

The history of dark universe physics can be traced from processes in the very early universe to the modern dominance of dark matter and energy. Here, we review the possible nontrivial role of strong interactions in cosmological effects of new physics. In the case of ordinary QCD interaction, the existence of new stable colored particles such as new stable quarks leads to new exotic forms of matter, some of which can be candidates for dark matter. New QCD-like strong interactions lead to new stable composite candidates bound by QCD-like confinement. We put special emphasis on the effects of interaction between new stable hadrons and ordinary matter, formation of anomalous forms of cosmic rays and exotic forms of matter, like stable fractionally charged particles. The possible correlation of these effects with high energy neutrino and cosmic ray signatures opens the way to study new physics of strong interactions by its indirect multi-messenger astrophysical probes.

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