New strong interactions: From QCD to LHC

D. Dietrich, Francesco Sannino, K. Tuominen
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Abstract

The concept of strong interactions need not be limited to the sector of physics taken by QCD. While this domain is investigated by RHIC, LHC will be able to probe potential new strong interactions simultaneously: Finding the precise mechanism for electroweak symmetry breaking is one of the prime problems of physics. Intricately linked to this point is the question after the true nature or even the existence of the Higgs boson. Here, we present stronly interacting theories providing an explanation for the hierarchy problem and leading to a light composite Higgs boson, favoured by experimental data. Our variation of the standard model is consistent with precision data. We achieve this accordance by using technifermions in a higher representation of their gauge group. Anomaly conditions require at least one extra lepton family for some of the theories whereby they contain a natural dark matter candidate. We can accurately determine the masses of said leptons from experimental data.
新的强相互作用:从QCD到LHC
强相互作用的概念不必局限于QCD所采用的物理领域。当这个领域被RHIC研究时,大型强子对撞机将能够同时探测潜在的新的强相互作用:寻找电弱对称性破缺的精确机制是物理学的主要问题之一。与这一点错综复杂地联系在一起的是希格斯玻色子的真实性质,甚至是存在与否的问题。在这里,我们提出了强相互作用理论,为层次问题提供了一个解释,并导致了一个轻复合希格斯玻色子,实验数据支持。我们对标准模型的变化与精确的数据是一致的。我们通过在其量规组的更高表示中使用技术来实现这种一致性。对于某些理论来说,异常条件至少需要一个额外的轻子家族,因此它们包含一个自然的暗物质候选者。我们可以从实验数据中精确地确定所述轻子的质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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