Inferring the covariant -exact noncommutative coupling in the top quark pair production at linear colliders
Abstract
A novel non-minimal interaction of neutral right-handed fermion and abelian gauge field in the covariant -exact noncommutative standard model (NCSM) which is invariant under Very Special Relativity (VSR) Lorentz subgroup, opens an avenue to study the top quark pair production at linear colliders. Here the coupling denoted as and the noncommutative (NC) scale . In this work, we consider two types of analysis, one is without considering helicity basis and another, considering helicity states of the polarized and unpolarized initial and final particles. In the first case, when is positive and for certain values of , we arrived a specific threshold value of machine energy (units of GeV) s0 ( 2.52 ~ + 39 ) may be quite useful to probe NCSM with the unpolarized beam. The statistical 2 analysis of the azimuthal anisotropy is quite possible when takes negative value 0 >> -0.596 which persuade a lower limit on NC scale ( 1.0\, to \, 2.4\,TeV) at max=-0.296 (95\% C.L) according to luminosity ranging from 100\,fb-1 to1000\,fb-1 at machine energy s=1.4\,TeV\,and\, 3.0\,TeV. In another case, we performed polarized beam analysis to probe NCSM in the light of following observables azimuthal anisotropy, helicity correlation, and top quark helicity left-right asymmetry. The polarization of the initial beam \ Pe-,Pe+\ = \-0.8,0.3\( \-0.8,0.6\) enhances the ranges of lower limit on , i.e.\, 1.13 \, to \, 2.80\,TeV at max alongside the max enhanced into -0.5445 \,(-0.607) 95\%C.L accord with luminosity and s. Finally, we studied the intriguing mixing of the UV and the IR by invoking T(2) VSR Lorentz subgroup symmetry on NC tensor μ.