"Table 353" of "Differential $t\bar{t}$ cross-section measurements using boosted top quarks in the all-hadronic final state with 139 fb$^{-1}$ of ATLAS data"
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Measurements of single-, double-, and triple-differential cross-sections are presented for boosted top-quark pair-production in 13 TeV proton--proton collisions recorded by the ATLAS detector at the LHC. The top quarks are observed through their hadronic decay and reconstructed as large-radius jets with the leading jet having transverse momentum ($p_{\rm T}$) greater than 500 GeV. The observed data are unfolded to remove detector effects. The particle-level cross-section, multiplied by the $t\bar{t}\rightarrow WWb\bar{b}$ branching fraction and measured in a fiducial phase space defined by requiring the leading and second-leading jets to have $p_{\rm T}$ > 500 GeV and $p_{\rm T}$ > 350 GeV, respectively, is $331 \pm 3 \rm{(stat.)} \pm 39 \rm{(syst.)}$ fb. This is approximately 20% lower than the prediction of $398^{+48}_{-49}$ fb by POWHEG+PYTHIA8 with next-to-leading-order (NLO) accuracy but consistent within the theoretical uncertainties. Results are also presented at the parton level, where the effects of top-quark decay, parton showering, and hadronization are removed such that they can be compared with fixed-order next-to-next-to-leading-order (NNLO) calculations. The parton-level cross-section, measured in a fiducial phase space similar to that at particle level, is $1.94 \pm 0.02 \rm{(stat.)} \pm 0.25 \rm{(syst.)}$ pb. This agrees with the NNLO prediction of $1.96^{+0.02}_{-0.17}$ pb. Reasonable agreement with the differential cross-sections is found for most NLO models, while the NNLO calculations are generally in better agreement with the data. The differential cross-sections are interpreted using a Standard Model effective field-theory formalism and limits are set on Wilson coefficients of several four-fermion operators.
本文报道了大型强子对撞机(Large Hadron Collider, LHC)上ATLAS探测器采集的13 TeV质子-质子碰撞数据中,大动量增强顶夸克对产生(boosted top-quark pair-production)过程的单微分、双微分及三微分截面测量结果。顶夸克通过强子衰变被观测,并重建为大半径喷注,其中领头喷注的横向动量(transverse momentum, $p_{
m T}$)大于500 GeV。
观测数据经去折叠处理以消除探测器效应。在fiducial相空间(fiducial phase space)——即要求领头喷注与次领头喷注的横向动量分别满足$p_{
m T} > 500 ext{GeV}$与$p_{
m T} > 350 ext{GeV}$——中,粒子层面截面乘以$tar{t} o WWbar{b}$分支比后的测量结果为$331 pm 3 ( ext{stat.}) pm 39 ( ext{syst.}) ext{fb}$。该结果较POWHEG+PYTHIA8模型(次领头阶(next-to-leading-order, NLO)精度)的预言值$398^{+48}_{-49} ext{fb}$低约20%,但与理论不确定度范围内的预言保持一致。
本文同时给出了部分子层面的测量结果:通过移除顶夸克衰变、部分子簇射(parton showering)与强子化(hadronization)效应,使得该结果可与固定阶次次次领头阶(next-to-next-to-leading-order, NNLO)计算结果直接对比。在与粒子层面相似的fiducial相空间中,测得的部分子层面截面为$1.94 pm 0.02 ( ext{stat.}) pm 0.25 ( ext{syst.}) ext{pb}$,与$1.96^{+0.02}_{-0.17} ext{pb}$的NNLO预言值相符。
多数次领头阶模型与本次微分截面测量结果的符合程度尚可,而次次领头阶计算结果与实验数据的符合程度整体更优。本文采用标准模型有效场论(Standard Model effective field theory)形式对微分截面进行诠释,并对多个四费米子算符(four-fermion operators)的威尔逊系数(Wilson coefficients)设置了约束。
创建时间:
2023-06-28



