Abstract

The Leptoquark model has been instrumental in explaining the observed lepton flavour universality violating charged ($b\to c$) and neutral ($b\to s$) current anomalies that have been the cause for substantial excitement in particle physics recently. In this article we have studied the role of one (designated as $V_2^{\frac 43}$) of the components of {\boldmath${V}_2$} Vector Leptoquark doublet with electromagnetic charge $\frac 43$ in explaining the neutral current ($b\to s$) anomalies $R_{K^{(*)}}$ and $B_s\to\mu^+\mu^-$. Moreover, we have performed a thorough collider search for this $V_2^{\frac 43}$ Leptoquark using $b\bar{b} \ell^+ \ell^-$ ($\ell\equiv e, \mu$) final state at the Large Hadron Collider. From our collider analysis we maximally exclude the mass of the $V_2^{\frac 43}$ Leptoquark up to 2340 GeV at 95\% confidence level for the 13 TeV Large Hadron Collider for an integrated luminosity of 3000 ${\rm fb}^{-1}$. Furthermore, a significant portion of the allowed parameter space that is consistent with the neutral current ($b\to s$) observables is excluded by collider analysis.

Highlights

  • The discovery of the Higgs boson in 2012 by the CMS [1] and ATLAS [2] collaborations is definitely one of the greatest achievements of Large Hadron Collider (LHC)

  • Experimental measurements of observables related to B physics have exhibited deviations of a few σ from their Standard Model (SM) expectations hinting towards the existence1 of beyond SM (BSM) physics

  • We study signatures corresponding to this vector leptoquark (VLQ) for bb + − final s√tates at the LHC with the centre of momentum (CM) energy s = 13 TeV

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Summary

INTRODUCTION

The discovery of the Higgs boson in 2012 by the CMS [1] and ATLAS [2] collaborations is definitely one of the greatest achievements of Large Hadron Collider (LHC). From our collider analysis and depending on the SM bilinear couplings with V23 VLQ we exclude the mass of this VLQ up to 2140 GeV and 2340 GeV for the two bench mark values of integrated luminosities 300 fb−1 and 3000 fb−1 respectively at the 95% confidence level (C.L.). At this point, we would like to mention that the other component (V23 ) of the V2.

EFFECTIVE LAGRANGIAN OF V2 VECTOR LEPTOQUARK
FLAVOUR SIGNATURES
Bs m3Bs
COLLIDER ANALYSIS
CONCLUSION
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