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Hadron Collider Potential for Excited Bosons Search

机译:Hadron碰撞者兴奋的助手搜索

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摘要

The e~+e~- and μ~+μ~- dilepton final states are the most clear channels for a new heavy neutral resonance search. Their advantage is that usually in the region of expected heavy-mass resonance peak the main irreducible background, from the Standard Model Drell-Yan process, contributes two orders of magnitude smaller than the signal. In this paper we consider the future prospects for search for the excited neutral Z*-bosons. The bosons can be observed as a Breit-Wigner resonance peak in the dilepton invariant mass distributions in the same way as the well-known extra gauge Z~* bosons. However, the Z* bosons have unique signatures in transverse momentum, angular and pseudorapidity distributions of the final leptons, which allow to distinguish them from the other heavy neutral resonances. At present only the ATLAS Collaboration has looked for such new excitations at the Large Hadron Collider and has published its results for 7 TeV collision energy. After successful comparison of our evaluation with these official results we present our estimations for the discovery potential and the exclusion limits on the Z*-boson search in pp collisions at higher centre-of-mass energies and different luminosities. In particular, LHC Run 2 can discover Z*-boson with its mass up to 5.3 TeV, while the High Luminosity LHC can extend that reach to 6.2 TeV. The High Energy LHC (with collision energy of 33 TeV) will be able to probe two times heavier resonance masses at the same integrated luminosities.
机译:E〜+ E〜 - μ〜+μ〜 - Dilepton最终状态是最清晰的新型重型共振搜索频道。它们的优势在于,通常在预期重质量共振峰的区域主要不可缩短的背景下,从标准模型Drell-yan过程中,贡献比信号小的两个数量级。在本文中,我们考虑了寻找兴奋的中性Z * -Bosons的未来前景。可以观察到玻色子作为Dilepton不变质量分布中的书呆子共振峰值,以与众所周知的额外测量值Z〜*玻色子相同。然而,Z *玻色子具有横向动量,角度和伪型分布的独特签名,其允许将它们与其他重中性共振区分开。目前只有地图集协作,寻找了大型特罗龙撞机的这种新激发,并发表了7 TEV碰撞能量的结果。在成功比较我们的评估我们与这些官方结果进行评估后,我们介绍了我们对Z * -Boson搜索的发现潜力和排除限制在较高的质量中心和不同的亮度下的估算。特别地,LHC RUN 2可以发现Z * -Boson,其质量可达5.3 TEV,而高亮度LHC可以延伸到6.2 TEV。高能LHC(33 TEV的碰撞能)将能够在相同的集成光度下探测两倍重的共振质量。

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