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CMS-SMP-14-018 ; CERN-EP-2016-308
Measurement of the cross section for electroweak production of Z$\gamma$ in association with two jets and constraints on anomalous quartic gauge couplings in proton-proton collisions at $ \sqrt{s} = $ 8 TeV
Phys. Lett. B 770 (2017) 380
Abstract: A measurement is presented of the cross section for the electroweak production of a Z boson and a photon in association with two jets in proton-proton collisions at $ \sqrt{s} = $ 8 TeV. The Z bosons are identified through their decays to electron or muon pairs. The measurement is based on data collected with the CMS detector corresponding to an integrated luminosity of 19.7 fb$^{-1}$. The electroweak contribution has a significance of 3.0 standard deviations, and the measured fiducial cross section is 1.86$_{-0.75}^{+0.90}$ (stat)$_{-0.26}^{+0.34}$ (syst) $\pm$ 0.05 (lumi) fb, while the summed electroweak and quantum chromodynamic total cross section in the same region is observed to be 5.94$_{-1.35}^{+1.53}$ (stat)$_{-0.37}^{+0.43}$ (syst) $\pm$ 0.13 (lumi) fb. Both measurements are consistent with the leading-order standard model predictions. Limits on anomalous quartic gauge couplings are set based on the Z$\gamma$ mass distribution.
Figures & Tables Summary References CMS Publications
Figures

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Figure 1:
Representative diagrams for EW $\mathrm{ Z } \gamma {\mathrm {jj}} $ production at the LHC: (a) bremsstrahlung, (b) multiperipheral, (c,d) VBF with TGC, (e) VBS including QGC, and (f) Example diagram for the QCD $\mathrm{ Z } \gamma {\mathrm {jj}} $ production.

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Figure 2:
The $M_{ {\mathrm {jj}} }$ distributions measured in (left) muon and (right) electron channels. The data (solid symbols with error bars representing the statistical uncertainties) are compared to a data-driven background estimate, combined with MC predictions for the signal contribution. The hashed bands represent the full uncertainty in the predictions, as described in Section 6. The last bin includes overflow events.

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Figure 2-a:
The $M_{ {\mathrm {jj}} }$ distribution measured in the muon channel. The data (solid symbols with error bars representing the statistical uncertainties) are compared to a data-driven background estimate, combined with MC predictions for the signal contribution. The hashed bands represent the full uncertainty in the predictions, as described in Section 6. The last bin includes overflow events.

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Figure 2-b:
The $M_{ {\mathrm {jj}} }$ distribution measured in the electron channel. The data (solid symbols with error bars representing the statistical uncertainties) are compared to a data-driven background estimate, combined with MC predictions for the signal contribution. The hashed bands represent the full uncertainty in the predictions, as described in Section 6. The last bin includes overflow events.

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Figure 3:
The invariant mass distribution of the ${\mathrm{ Z } } \gamma $ system for events that pass the aQGC selection. The highest mass bin includes events with $M_{{\mathrm{ Z } } \gamma } > $ 420 GeV. Error bars represent the statistical uncertainty in the data, while the systematic uncertainties in the aQGC signal and background estimate are shown as hatched bands.
Tables

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Table 1:
Summary of the three different event criteria: (1) selection for the EW signal measurement; (2) the cross section measurement; and (3) the selection for the aQGC search. ``j1" and ``j2" represent the jets that have the largest and second-largest $ {p_{\mathrm {T}}} $, ``$\ell 1$" and ``$\ell 2$" denote the lepton and antilepton from the decay of the Z boson, $y$ is the rapidity, $\Delta \phi _{{\mathrm{ Z } } \gamma , {\mathrm {jj}} }$ is the absolute difference between $\phi _{{\mathrm{ Z } } \gamma }$ and $\phi _{\mathrm {j1j2}}$, and the angular separation $\Delta R = \sqrt {\smash [b]{(\Delta \eta )^{2}+(\Delta \phi )^{2}}}$.

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Table 2:
Summary of the major uncertainties.

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Table 3:
Signal and background yields after the final selection for the SM measurement, for the two bins of 400 $ $ 800 GeV (lower). Only statistical uncertainties are reported.

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Table 4:
Observed and expected shape-based exclusion limits for each aQGC parameter at 95% CL, without a form factor applied.
Summary
The measurement of the cross section for the electroweak production of a Z boson and a photon in association with two jets, where the Z boson decays into electron or muon pairs, was presented. The measurement is based on a sample of proton-proton collisions collected with the CMS detector at a center-of-mass energy of 8 TeV, corresponding to an integrated luminosity of 19.7 fb$^{-1}$. We find evidence for EW $\mathrm{ Z }\gamma{\mathrm{jj}} $ production with an observed (expected) significance of 3.0 (2.1) standard deviations. The fiducial cross section for EW $\mathrm{ Z }\gamma{\mathrm{jj}} $ production is measured to be 1.86$_{-0.75}^{+0.90}$ (stat)$_{-0.26}^{+0.34}$ (syst) $\pm$ 0.05 (lumi) fb, consistent with the theoretical prediction. The fiducial cross section for combined EW and QCD $\mathrm{ Z }\gamma{\mathrm{jj}} $ production is 5.94$_{-1.35}^{+1.53}$ (stat)$_{-0.37}^{+0.43}$ (syst) $\pm$ 0.13 (lumi) fb, which is also consistent with the leading-order theoretical prediction. In the framework of dimension-eight effective field theory operators, limits on the aQGC parameters $f_\mathrm{M0,1,2,3}$ and $f_\mathrm{T0,1,2,8,9}$ are set at 95% confidence level. This is the first constraints on the neutral aQGC parameters $f_\mathrm{T8}$.
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Compact Muon Solenoid
LHC, CERN