Abstract

The fiducial cross section for Y(1S) pair production in proton-proton collisions at a center-of-mass energy of 13 TeV in the region where both Y(1S) mesons have an absolute rapidity below 2.0 is measured to be 79±11(stat)±6(syst)±3(B)pb assuming the mesons are produced unpolarized. The last uncertainty corresponds to the uncertainty in the Y(1S) meson dimuon branching fraction. The measurement is performed in the final state with four muons using proton-proton collision data collected in 2016 by the CMS experiment at the LHC, corresponding to an integrated luminosity of 35.9fb−1. This process serves as a standard model reference in a search for narrow resonances decaying to Y(1S)μ+μ− in the same final state. Such a resonance could indicate the existence of a tetraquark that is a bound state of two b quarks and two b¯ antiquarks. The tetraquark search is performed for masses in the vicinity of four times the bottom quark mass, between 17.5 and 19.5 GeV, while a generic search for other resonances is performed for masses between 16.5 and 27 GeV. No significant excess of events compatible with a narrow resonance is observed in the data. Limits on the production cross section times branching fraction to four muons via an intermediate Y(1S) resonance are set as a function of the resonance mass.

Highlights

  • Quarkonium pair production is an important probe of both perturbative and nonperturbative processes in quantum chromodynamics

  • Upper limits on the product of the production cross section of a resonance and the branching fraction to a final state of four muons via an intermediate Y(1S) resonance are set at 95% confidence level (CL) using the modified frequentist construction CLs in the asymptotic approximation [40,41,42,43,44], separately for each signal model

  • The cross section for Y(1S) pair production is measured in the fiducial region where both Y(1S) mesons have an absolute rapidity below 2.0

Read more

Summary

Introduction

Quarkonium pair production is an important probe of both perturbative and nonperturbative processes in quantum chromodynamics. Experimental studies of this process can provide valuable information about the underlying mechanisms of particle production and improve our understanding of numerous physics processes that are treated as backgrounds in searches and measurements. Quarkonium pairs may originate from single-parton scattering (SPS) or double-parton scattering (DPS). These production mechanisms can be separated experimentally since the DPS production is characterized, among other features, by more forward and separated mesons. This Letter presents a measurement of the Y(1S) pair production cross section at a center-of-mass energy of 13 TeV. The DPS contribution to the process is measured for the first time

Methods
Results
Conclusion
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call