Article Fingerprint
ReserarchID
SFRL3UKP
The Left-Right symmetry Model (LRSM) is an extension of the Standard Model based on the gauge symmetry group SU(3)C × SU(2)L × SU(2)R × U(1)B-L predicts by existence new particles like doubly-charged Higgs boson, W’ new charged boson, Z’ new neutral boson and heavy neutrinos. In this work we present an analysis for production four-charged lepton in final state produced via decaying a pair of doubly-charged Higgs boson in the context of LRSM by using Monte Carlo simulation Techniques at both the Large Hadron Collider (proton-proton collisions) and the Fermilab Tevatron Collider (proton-antiproton collisions). In this analysis we assume that the branching ratio of decay channels of left-handed or right-handed doublycharged Higgs boson BR ( 𝐻𝐻 ±± → ℓ ± ℓ ± = 100%, ℓ = 𝑒𝑒 ± , 𝜇𝜇 ± , 𝜏𝜏 ± ). We carry out a Monte Carlo study of the (Left or Right) doubly charged Higgs pair production and decay to four-charged lepton via the process 𝑝𝑝𝑝𝑝(𝑝𝑝̅ ) → 𝐻𝐻 ±± 𝐻𝐻 ±± → ℓ ± ℓ ± ℓ ± ℓ ± , ℓ = 𝑒𝑒 ± , 𝜇𝜇 ± , 𝜏𝜏 ± . From Monte Carlo simulation level the doubly-charged Higgs may be found at the LHC or at the Tevatron in the mass range up to 800 GeV.
Nady Bakhet. 2014. \u201cSearch for Four-Charged Lepton from Decay Doubly-Charged Higgs Pair Production at the Hadron Colliders\u201d. Global Journal of Science Frontier Research - A: Physics & Space Science GJSFR-A Volume 14 (GJSFR Volume 14 Issue A5): .
Crossref Journal DOI 10.17406/GJSFR
Print ISSN 0975-5896
e-ISSN 2249-4626
Explore published articles in an immersive Augmented Reality environment. Our platform converts research papers into interactive 3D books, allowing readers to view and interact with content using AR and VR compatible devices.
Your published article is automatically converted into a realistic 3D book. Flip through pages and read research papers in a more engaging and interactive format.
Total Score: 103
Country: Egypt
Subject: Global Journal of Science Frontier Research - A: Physics & Space Science
Authors: Nady Bakhet, Maxim Yu. Khlopov, Tarek Hussein (PhD/Dr. count: 0)
View Count (all-time): 116
Total Views (Real + Logic): 4477
Total Downloads (simulated): 2335
Publish Date: 2014 09, Wed
Monthly Totals (Real + Logic):
This paper attempted to assess the attitudes of students in
Advances in technology have created the potential for a new
Inclusion has become a priority on the global educational agenda,
The Left-Right symmetry Model (LRSM) is an extension of the Standard Model based on the gauge symmetry group SU(3)C × SU(2)L × SU(2)R × U(1)B-L predicts by existence new particles like doubly-charged Higgs boson, W’ new charged boson, Z’ new neutral boson and heavy neutrinos. In this work we present an analysis for production four-charged lepton in final state produced via decaying a pair of doubly-charged Higgs boson in the context of LRSM by using Monte Carlo simulation Techniques at both the Large Hadron Collider (proton-proton collisions) and the Fermilab Tevatron Collider (proton-antiproton collisions). In this analysis we assume that the branching ratio of decay channels of left-handed or right-handed doublycharged Higgs boson BR ( 𝐻𝐻 ±± → ℓ ± ℓ ± = 100%, ℓ = 𝑒𝑒 ± , 𝜇𝜇 ± , 𝜏𝜏 ± ). We carry out a Monte Carlo study of the (Left or Right) doubly charged Higgs pair production and decay to four-charged lepton via the process 𝑝𝑝𝑝𝑝(𝑝𝑝̅ ) → 𝐻𝐻 ±± 𝐻𝐻 ±± → ℓ ± ℓ ± ℓ ± ℓ ± , ℓ = 𝑒𝑒 ± , 𝜇𝜇 ± , 𝜏𝜏 ± . From Monte Carlo simulation level the doubly-charged Higgs may be found at the LHC or at the Tevatron in the mass range up to 800 GeV.
Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.