4.7 Article

Observing t(t)over-barZ spin correlations at the LHC

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EUROPEAN PHYSICAL JOURNAL C
卷 81, 期 9, 页码 -

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SPRINGER
DOI: 10.1140/epjc/s10052-021-09605-8

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  1. Royal Society fellowship [URF\R1\191524]

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This study calculates the spin correlations in the production of top-antitop quark pairs with a Z boson, finding significantly different spin correlations and inducing small longitudinal polarizations of the top quarks. It proposes an analysis strategy to observe spin correlations in ttZ events and shows novel constraints on dimension-6 effective field theory operators relevant to the t-Z interaction, without reference to total production rates.
Spin correlations in the production of top-antitop quark (t (t) over bar) pairs at the Large Hadron Collider (LHC) are an experimentally verified prediction of the Standard Model. In this paper, we compute the full spin density matrix for t (t) over barZ production at next-to-leading order precision in QCD, for center-of-mass energies of 13 and 14 TeV. We find that the additional emission of a Z boson leads to significantly different spin correlations with respect to the t (t) over bar case, and induces small longitudinal polarisations of the top quarks. We further propose an analysis strategy that could lead to the observation of spin correlations in t (t) over bar Z events at the end of Run 3 of the LHC, or possibly earlier by combining the ATLAS and CMS datasets. In addition, we show that the pure angular information contained in the spin density matrix provides novel constraints on the dimension-6 effective field theory operators relevant to the t-Z interaction, without any reference to the total production rates.

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