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U(3)C×Sp(1)L×U(1)L×U(1)R

机译:U(3)C×Sp(1)L×U(1)L×U(1)R

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摘要

We outline the basic setting of theU(3)C×Sp(1)L×U(1)L×U(1)Rgauge theory and review the associated phenomenological aspects related to experimental searches for new physics at hadron colliders. In this construction, there are two massiveZ′-gauge bosons, which can be naturally associated with baryon numberB  and  B-L  (Lbeing lepton number). We discuss the potential signals which may be accessible at the Tevatron and at the Large Hadron Collider (LHC). In particular, we provide the relevant cross sections for the production ofZ′-gauge bosons in the TeV region, leading to predictions that are within reach of the present or the next LHC run. After that we direct attention to embedding the gauge theory into the framework of string theory. We consider extensions of the standard model based on open strings ending on D-branes, with gauge bosons due to strings attached to stacks of D-branes and chiral matter due to strings stretching between intersecting D-branes. Assuming that the fundamental string mass scale is in the TeV range and the theory is weakly coupled, we explore the LHC discovery potential for Regge excitations.
机译:我们概述了U(3)C×Sp(1)L×U(1)L×U(1)R量规理论的基本设置,并回顾了与在强子对撞机上寻找新物理的实验相关的现象学方面。在这种构造中,有两个巨大的Z'-规格玻色子,它们可以自然地与重子数B和B-L(李平轻子数)相关联。我们讨论了可能在Tevatron和大型强子对撞机(LHC)上获得的潜在信号。特别是,我们提供了在TeV地区生产Z'-规格玻色子的相关横截面,从而得出了当前或下一轮LHC运行所能达到的预测。之后,我们将注意力直接放在将量规理论嵌入到弦理论的框架中。我们考虑基于以D谱线结尾的开放弦的标准模型的扩展,规范的玻色子归因于连接到D谱叠的弦,而手性物质归因于相交的D谱之间的弦拉伸。假设基本弦的质量尺度在TeV范围内并且该理论是弱耦合的,我们探索了Regge激发的LHC发现潜力。

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