255 research outputs found

    Role of polarizations and spin-spin correlations of Wβ€²sW's in eβˆ’e+β†’Wβˆ’W+e^-e^+ \to W^-W^+ at s=250\sqrt{s} = 250 GeV to probe anomalous Wβˆ’W+Z/Ξ³W^-W^+Z/\gamma couplings

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    We study anomalous Wβˆ’W+Z/Ξ³W^-W^+Z/\gamma couplings due to dimension-66 operators in the production process eβˆ’e+β†’Wβˆ’W+e^-e^+ \to W^-W^+ followed by semi-leptonic decay using polarizations and spin-spin correlations of WW bosons. The construction of some of the polarization and spin-spin correlation asymmetries required one to distinguish between two decay quarks coming from W+W^+ decay. We developed an artificial neural network (ANN) and a boosted decision tree (BDT) to distinguish down-type jets from up-type jets and used them to put constraint on anomalous couplings at International Linear Collider (ILC) running at s=250\sqrt{s} = 250 GeV with integrated luminosities of $\mathcal{L} \in \{100 \ \text{fb}^{-1}, \ 250 \ \text{fb}^{-1}, \ 1000 \ \text{fb}^{-1}, \ 3000 \ \text{fb}^{-1}\}$. We find that the use of polarization and spin correlation observables, on top of the cross-sections, significantly improves the limits on anomalous coupling compared to the earlier studies.Comment: 17 pages, 26 figure
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