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Fragmentation uncertainties in hadronic observables for top-quark mass measurements

机译:顶部夸克质量测量的抗辐射观察中的碎片不确定性

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We study the Monte Carlo uncertainties due to modeling of hadronization and showering in the extraction of the top-quark mass from observables that use exclusive hadronic final states in top decays, such as t - anything+ J/psi or t. anything+(B - chargedtracks), where Bis a B-hadron. To this end, we investigate the sensitivity of the top-quark mass, determined by means of a few observables already proposed in the literature as well as some new proposals, to the relevant parameters of event generators, such as HERWIG6 and PYTHIA8. We find that constraining those parameters at O(1%-10%) is required to avoid a Monte Carlo uncertainty on mtgreater than 500 MeV. For the sake of achieving the needed accuracy on such parameters, we examine the sensitivity of the top-quark mass measured from spectral features, such as peaks, endpoints and distributions of E-B, m(Bl), and some m(T2)-like variables. We find that restricting oneself to regions sufficiently close to the endpoints enables one to substantially decrease the dependence on the Monte Carlo parameters, but at the price of inflating significantly the statistical uncertainties. To ameliorate this situation we study how well the data on top-quark production and decay at the LHC can be utilized to constrain the showering and hadronization variables. We find that a global exploration of several calibration observables, sensitive to the Monte Carlo parameters but very mildly to mt, can offer useful constraints on the parameters, as long as such quantities are measured with a 1% precision. (c) 2018 The Author(s). Published by Elsevier B.V.
机译:我们研究了Monte Carlo的不确定性,因为在从顶部衰变中使用独家HODRONIC最终状态的可观察到的顶夸克质量的促进和淋浴,例如T - &任何+ j / psi或t。任何+(b - & chargedtracks),其中bis a b-havron。为此,我们调查了顶级夸克质量的敏感性,通过文学中已经提出的一些观察品以及一些新的提案来确定事件发生器的相关参数,例如Herwig6和Pythia8。我们发现,需要在o(1%-10%)的那些参数来避免MTGREAT的蒙特卡罗不确定性超过500米。为了实现对这些参数的所需准确性,我们研究了从谱特征测量的顶夸克质量的灵敏度,例如EB,M(BL)和一些M(T2) - 麦克风的峰值,终点和分布变量。我们发现将自己限制到足够接近终点的区域使一个能够大大降低对蒙特卡罗参数的依赖性,而是以膨胀的价格显着提高统计不确定性。为了改善这种情况,我们研究了顶级夸克生产的数据如何利用LHC的衰减来限制淋浴和结发变量。我们发现,对多个校准可观察到的全球勘探,对Monte Carlo参数敏感,但非常温和地到MT,可以为参数提供有用的约束,只要这种数量以1%的精度测量。 (c)2018年作者。由elsevier b.v出版。

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