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Top Yukawa deviation in extra dimension

机译:汤唯在尺寸上的最大偏差

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We suggest a simple one-Higgs-doublet model living in the bulk of five-dimensional spacetime compactified on S-1/Z(2), in which the top Yukawa coupling can be smaller than the naive standard-model expectation, i.e. the top quark mass divided by the Higgs vacuum expectation value. If we find only single Higgs particle at the LHC and also observe the top Yukawa deviation, our scenario becomes a realistic candidate beyond the standard model. The Yukawa deviation comes from the fact that the wave function profile of the free physical Higgs field can become different from that of the vacuum expectation value, due to the presence of the brane-localized Higgs potentials. In the Brane-Localized Fermion scenario, we find sizable top Yukawa deviation, which could be checked at the LHC experiment, with a dominant Higgs production channel being the WW fusion. We also study the Bulk Fermion scenario with brane-localized Higgs potential, which resembles the Universal Extra Dimension model with a stable dark matter candidate. We show that both scenarios are consistent with the current electroweak precision measurements.
机译:我们建议在S-1 / Z(2)上压缩的大量五维时空中建立一个简单的单希格斯-双重峰模型,其中,Yukawa耦合的顶部可以小于朴素的标准模型期望值,即顶部夸克质量除以希格斯真空期望值。如果我们在大型强子对撞机上仅发现一个希格斯粒子,并且还观察到了Yukawa的最大偏差,那么我们的情况将成为超出标准模型的实际候选者。 Yukawa偏差来自于这样一个事实,即由于存在布雷恩定域的希格斯电势,自由物理希格斯场的波函数分布可能变得不同于真空期望值的波动函数。在Brane-Localized Fermion场景中,我们发现有较大的Yukawa顶部偏差,可以在LHC实验中进行检查,主要的Higgs生产通道是WW融合。我们还研究了布恩定域希格斯势的体费米子情形,该情形类似于具有稳定暗物质候选物的通用超维模型。我们证明这两种情况都与当前的电弱精度测量结果一致。

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