首页> 美国政府科技报告 >Measurement of the Top Quark Pair Production Cross Section in Proton-Antiproton Collisions at a Center of Mass Energy of 1.96 TeV, Hadronic Top Decays with the D0 Detector, (Thesis/Dissertation)
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Measurement of the Top Quark Pair Production Cross Section in Proton-Antiproton Collisions at a Center of Mass Energy of 1.96 TeV, Hadronic Top Decays with the D0 Detector, (Thesis/Dissertation)

机译:用质量能量为1.96 TeV的质子 - 反质子碰撞顶部夸克对生产截面的测量,D0探测器的Hadronic顶部衰变,(论文/论文)

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Of the six quarks in the standard model the top quark is by far the heaviest: 35 times more massive than its partner the bottom quark and more than 130 times heavier than the average of the other five quarks. Its correspondingly small decay width means it tends to decay before forming a bound state. Of all quarks, therefore, the top is the least affected by quark confinement, behaving almost as a free quark. Its large mass also makes the top quark a key player in the realm of the postulated Higgs boson, whose coupling strengths to particles are proportional to their masses. Precision measurements of particle masses for e.g. the top quark and the W boson can hereby provide indirect constraints on the Higgs boson mass.

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