Abstract

We consider processes where an electroweak gauge boson ($W$ and $Z$) is produced in the decays of a heavy fermion. The polarization state of the produced gauge boson is given in terms of a vector polarization and a rank-2 tensor polarization. In the rest frame of the mother fermion, these are given directly by the dynamical parameters of the underlying theory. In a frame where the mother particle is moving, the polarization parameters of the gauge boson are dependent additionally upon kinematical factors. We show that these kinematical factors depend only on the magnitude of the velocity of the mother particle and derive analytical expressions for them. We apply the results to pair production of heavy fermions at the LHC with one of the fermions decaying to a gauge boson ($W$, $Z$) and a light Standard Model fermion. We construct estimators of laboratory frame values of polarization parameters of the produced gauge boson. These estimators can be used to estimate the laboratory frame values of polarization parameters of the produced gauge boson without a detailed simulation of the entire process. We validate our expressions with detailed Monte Carlo simulations in the context of beyond the Standard Model scenarios which have a vector-like top partner. We also indicate how to include finite width effects of the heavy fermion in some special cases.

Highlights

  • Polarization of unstable particles such as the top, the tau or the electroweak gauge bosons (W, Z) produced in high energy colliders is a powerful tool

  • We investigate the effect of kinematics on the polarization state of a spin-1 particle, such as W or Z, in a class of processes where the boson is produced in the decays of a heavy fermion

  • We constructed simple estimators of the polarization parameters requiring only the velocity distribution of the mother particle, apart from the necessary couplings and masses involved in the decay of the mother particle

Read more

Summary

Arunprasath*

We consider processes where an electroweak gauge boson (W or Z) is produced in the decays of a heavy fermion. In a frame where the mother particle is moving, the polarization parameters of the gauge boson are dependent upon kinematical factors. We show that these kinematical factors depend only on the magnitude of the velocity of the mother particle and derive analytical expressions for them. We apply the results to pair production of heavy fermions at the LHC with one of the fermions decaying to a gauge boson (W, Z) and a light Standard Model fermion. We construct estimators of laboratory frame values of polarization parameters of the produced gauge boson.

INTRODUCTION
POLARIZATION PARAMETERS OF V
MODELS
The singlet model
The doublet model The Yukawa part of the Lagrangian reads
Benchmark points
Discussion
FORMALISM
POLARIZATION ESTIMATORS
SUMMARY

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

Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.