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Search for lepton flavour violating decays of heavy resonances and quantum black holes to an eμ pair in proton–proton collisions at √s = 8 TeV

机译:在√s= 8 TeV的质子-质子碰撞中,搜索违反重共振和量子黑洞衰减成eμ对的轻子风味

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摘要

A search for narrow resonances decaying to an electron and a muon is presented. The eμ mass spectrum is also investigated for non-resonant contributions from the production of quantum black holes (QBHs). The analysis is performed using data corresponding to an integrated luminosity of 19.7 fb^(-1) collected in proton-proton collisions at a centre-of-mass energy of 8 TeV with the CMS detector at the LHC. With no evidence for physics beyond the standard model in the invariant mass spectrum of selected eμ pairs, upper limits are set at 95 % confidence level on the product of cross section and branching fraction for signals arising in theories with charged lepton flavour violation. In the search for narrow resonances, the resonant production of a τ sneutrino in R-parity violating supersymmetry is considered. The τ sneutrino is excluded for masses below 1.28 TeV for couplings λ_(132) =λ_(231) =λ′_(311) =0.01, and below 2.30 TeV for λ_(132) =λ_(231) =0.07 λ and λ′_(311) =0.11. These are the most stringent limits to date from direct searches at high-energy colliders. In addition, the resonance searches are interpreted in terms of a model with heavy partners of the Z boson and the photon. In a framework of TeV-scale quantum gravity based on a renormalization of Newton’s constant, the search for non-resonant contributions to the eμ mass spectrum excludes QBH production below a threshold mass M_(th) of 1.99 TeV. In models that invoke extra dimensions, the bounds range from 2.36 TeV for one extra dimension to 3.63 TeV for six extra dimensions. This is the first search for QBHs decaying into the eμ final state.
机译:提出了寻找衰减到电子和介子的窄共振的方法。还研究了eμ质谱图中量子黑洞(QBHs)产生的非共振贡献。使用在LHC上使用CMS检测器在质子质子碰撞中以8 TeV的质心能量采集的积分光度19.7 fb ^(-1)对应的数据进行分析。在选定的eμ对的不变质谱中,没有标准模型的物理学证据,对于理论上出现带电荷的轻子蛋白味道违背的信号,将横截面和分支分数乘积的上限设置为95%置信水平。在寻找窄共振时,考虑了违反R奇偶性超对称的τ中微子的共振产生。对于耦合λ_(132)=λ_(231)=λ′_(311)= 0.01的质量低于1.28 TeV的质量,排除τ中微子;对于λ_(132)=λ_(231)= 0.07的质量,低于2.30 TeV的质量′_(311)= 0.11。这些是迄今为止在高能对撞机上进行直接搜索时最严格的限制。此外,共振搜索是根据具有Z玻色子和光子的重伙伴的模型来解释的。在基于牛顿常数的重新归一化的TeV尺度量子引力的框架中,对eμ质谱的非共振贡献的搜索排除了在1.99 TeV阈值质量M_(th)以下的QBH产生。在调用额外尺寸的模型中,边界范围从一个额外尺寸的2.36 TeV到六个额外尺寸的3.63 TeV。这是对衰落到eμ最终状态的QBH的首次搜索。

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