Effect of earth rotation on pair production of Standard Model Higgs bosons at linear colliders in the noncommutative space-time
arXiv:1207.1246 · doi:10.1142/S0217751X13500048
Abstract
We study the neutral Higgs boson pair production through collision in the noncommutative(NC) extension of the standard model using the Seiberg-Witten maps of this to the first order of the noncommutative parameter . This process is forbidden in the standard model at the tree level with background space-time being commutative. After including the effects of earth's rotation we analyse the time-averaged cross section of the pair production of Higgs boson (in the light of LEP II and LHC data) at the future Linear Collider which can be quite significant for the NC scale lying in the range TeV. For the 125 GeV Higgs mass(the most promising value of Higgs mass as reported by LHC), we find the NC scale as and using (the lower threshold value of the excluded region of reported by ATLAS(CMS) collaborations of LHC), we find the bound on as: (i) corresponding to the Linear Collider energy .
20 pages, 16 eps figures. arXiv admin note: substantial text overlap with arXiv:1009.3571
References in corpus (8)
- Improved Z -> gamma gamma decay in the renormalizable gauge sector of the noncommutative standard model
- Spacetime noncommutativity and ultra-high energy cosmic ray experiments
- Constraining spacetime noncommutativity with primordial nucleosynthesis
- Lorentz Conserving Noncommutative Standard Model
- Location and Direction Dependent Effects in Collider Physics from Noncommutativity
- Möller and Bhabha scattering in the noncommutative standard model
- Can Seiberg-Witten Map Bypass Noncommutative Gauge Theory No-Go Theorem?
- Neutral Higgs boson pair production at the LC in the Noncommutative Standard Model