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Electroweak precision measurements and collider probes of the Standard Model with large extra dimensions

机译:标准尺寸的电弱精密测量和对撞探头,具有较大的尺寸

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摘要

The elementary particles of the Standard Model may live in more than 3+1 dimensions. We study the consequences of large compactified dimensions on scattering and decay observables at high-energy colliders. Our analysis includes global fits to electroweak precision data, indirect tests at high-energy electron-positron colliders (LEP2 and NLC), and direct probes of the Kaluza-Klein resonances at hadron colliders (Tevatron and LHC). The present limits depend sensitively on the Higgs sector, both the mass of the Higgs boson and how many dimensions it feels. If the Higgs boson is trapped on a 3+1 dimensional wall with the fermions, large Higgs masses (up to 500 GeV) and relatively light Kaluza-Klein mass scales (less than 4 TeV) can provide a good fit to precision data. That is, a light Higgs boson is not necessary to fit the electroweak precision data, as it is in the Standard Model. If the Higgs boson propagates in higher dimensions, precision data prefer a light Higgs boson (less than 260 GeV), and a higher compactification scale (greater than 3.8 TeV). Future colliders can probe much larger scales. For example, a 1.5 TeV electron-positron linear collider can indirectly discover Kaluza-Klein excitations up to 31 TeV if 500 fb^-1 integrated luminosity is obtained.
机译:标准模型的基本粒子可能存在超过3 + 1个维度。我们研究了大压缩尺寸对高能对撞机散射和衰变可观测物的影响。我们的分析包括对电弱精度数据的整体拟合,在高能电子-正电子对撞机(LEP2和NLC)上的间接测试以及在强子对撞机(Tevatron和LHC)上Kaluza-Klein共振的直接探针。目前的限制敏感地取决于希格斯区,包括希格斯玻色子的质量和感觉到的尺寸。如果将希格斯玻色子与费米子一起困在3 + 1尺寸的壁上,则较大的希格斯质量(高达500 GeV)和相对较轻的Kaluza-Klein质量标尺(小于4 TeV)可以很好地适合精度数据。也就是说,像标准模型中那样,不需要希格斯玻色子就可以满足电弱精度数据的需要。如果希格斯玻色子以更高的尺寸传播,则精确数据更喜欢希格斯玻色子轻(小于260 GeV)和更高的压实度(大于3.8 TeV)。未来的对撞机可以探测更大的范围。例如,如果获得500 fb ^ -1的综合发光度,则1.5 TeV电子-正电子线性对撞机可以间接发现高达31 TeV的Kaluza-Klein激发。

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