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Compact Muon Solenoid
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CMS-PAS-SMP-14-010
Measurement of the associated production of a Z boson and b jets in pp collisions at 8 TeV
Abstract: The study of the production of a Z boson in association with at least one jet originating from a b quark in proton-proton collisions at $\sqrt{s} =$ 8 TeV is presented. Differential cross sections are measured on data collected by CMS in 2012, for a total integrated luminosity of 19.8 fb$^{-1}$, using Z boson decays into electrons or muons, and identified b quark jets. Cross sections are measured as a function of observables characterizing the b jet and Z boson kinematics, and ratios of differential cross sections for the associated production with at least a b jet and with any jet are presented. In the case where two b quark jets are reconstructed, differential cross sections are also measured for observables describing the kinematics of the dijet system. Results are compared to theoretical predictions, testing two different flavour schemes for the choice of initial state partons.
Summary CMS Publications
Summary
The process of the associated production of jets, including b jets, and a Z boson decaying into lepton pairs ($\ell =$ e, $\mu$) has been measured in LHC pp collisions at $\sqrt{s} =$ 8 TeV with the CMS experiment, using a total integrated luminosity of 19.8 fb$^{-1}$. The measured fiducial cross sections in data are compared to several theoretical predictions after the unfolding procedure. The cross sections have been measured as a function of various kinematic observables describing the topology where a Z boson and at least one b jet are present: the $p_{ \mathrm{T} }$ and $\eta$ of the leading b jet, the Z boson $p_{ \mathrm{T} }$, the scalar sum of the jet energies $H_{\mathrm{T}}$, and the azimuthal angular difference between the direction of the leading b jet and the Z boson. The comparison between unfolded data and the matrix element plus parton shower leading order prediction in perturbative QCD is made testing two different models using the MadGraph event generator and using the NLO calculation for the first jet with POWHEG. Most of the distributions show a good agreement between data and theoretical prediction, with the shape of the soft b-jet region slightly better reproduced by MadGraph 4FS, while its normalization is underestimated by about 20%. The differential cross section ratios between the inclusive Z+jets and Z+b jets final state has been measured and compared with the theoretical expectations. The 4FS-based prediction fails to describe the shape of the ratio as a function of the leading b-jet $p_{ \mathrm{T} }$, and discrepancies in the shape are observed also for high values of the Z boson $p_{ \mathrm{T} }$.
The case where at least two b jets are detected in the fiducial phase space has also been studied. The kinematic observables studied are: the $p_{ \mathrm{T} }$ of the leading and of the subleading b jets, the $p_{ \mathrm{T} }$ of the Z boson, the distances between the b jets both in the azimuthal angle and in the $\eta$-$\phi$ plane, the minimal distance in the $\eta$-$\phi$ plane between the Z boson and a b jet and the asymmetry between the minimal and the maximal distances between the Z boson and a b jet, the invariant masses of the bb and of the Zbb systems. The distributions are generally well reproduced within uncertainties.
Compact Muon Solenoid
LHC, CERN