LHC physics of extra gauge bosons in the 4D Composite Higgs Model
LHC physics of extra gauge bosons in the 4D Composite Higgs Model
 
  We study the phenomenology of both the Neutral Current (NC) and Charged Current (CC) Drell-Yan (DY) processes at the Large Hadron Collider (LHC) within a 4 Dimensional realization of a Composite Higgs model with partial compositness by estimating the integrated and differential event rates and taking into account the possible impact of the extra fermions present in the spectrum. We show that, in certain regions of the parameters space, the multiple neutral resonances present in the model can be distinguishable and experimentally accessible in the invariant or transverse mass distributions. 
  high energy physics, phenomenology
  1-3
  
  
    
      Barducci, D.
      
        bdea7d87-a3aa-4fbc-8705-ee80582fe14d
      
     
  
    
      Belyaev, A.
      
        6bdb9638-5ff9-4b65-a8f2-34bae3ac34b3
      
     
  
    
      De Curtis, S.
      
        f18d9632-8911-4f37-896f-fb2018eef4fb
      
     
  
    
      Moretti, S.
      
        b57cf0f0-4bc3-4e02-96e3-071255366614
      
     
  
    
      Pruna, G.M.
      
        6b9fe4b4-1ed3-4548-b4d8-9ceae0574c3c
      
     
  
  
   
  
  
    
      6 July 2013
    
    
  
  
    
      Barducci, D.
      
        bdea7d87-a3aa-4fbc-8705-ee80582fe14d
      
     
  
    
      Belyaev, A.
      
        6bdb9638-5ff9-4b65-a8f2-34bae3ac34b3
      
     
  
    
      De Curtis, S.
      
        f18d9632-8911-4f37-896f-fb2018eef4fb
      
     
  
    
      Moretti, S.
      
        b57cf0f0-4bc3-4e02-96e3-071255366614
      
     
  
    
      Pruna, G.M.
      
        6b9fe4b4-1ed3-4548-b4d8-9ceae0574c3c
      
     
  
       
    
 
  
    
      
  
  
  
  
  
  
    Barducci, D., Belyaev, A., De Curtis, S., Moretti, S. and Pruna, G.M.
  
  
  
  
   
    (2013)
  
  
    
    LHC physics of extra gauge bosons in the 4D Composite Higgs Model.
  
  
  
  
    Pre-print, (arXiv:1307.1782), .
  
   
  
  
   
  
  
  
  
  
   
  
    
      
        
          Abstract
          We study the phenomenology of both the Neutral Current (NC) and Charged Current (CC) Drell-Yan (DY) processes at the Large Hadron Collider (LHC) within a 4 Dimensional realization of a Composite Higgs model with partial compositness by estimating the integrated and differential event rates and taking into account the possible impact of the extra fermions present in the spectrum. We show that, in certain regions of the parameters space, the multiple neutral resonances present in the model can be distinguishable and experimentally accessible in the invariant or transverse mass distributions. 
        
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  More information
  
    
      Published date: 6 July 2013
 
    
  
  
    
  
    
     
        Additional Information:
        Conference proceeding, LCHP 2013, 13-18 May 2013, Bacelona
      
    
  
    
  
    
  
    
  
    
     
        Keywords:
        high energy physics, phenomenology
      
    
  
    
     
        Organisations:
        Physics & Astronomy
      
    
  
    
  
  
        Identifiers
        Local EPrints ID: 356652
        URI: http://eprints.soton.ac.uk/id/eprint/356652
        
        
        
        
          PURE UUID: 5f4f7d94-3328-49dc-b876-7f9d21737614
        
  
    
        
          
        
    
        
          
            
              
            
          
        
    
        
          
        
    
        
          
            
              
            
          
        
    
        
          
        
    
  
  Catalogue record
  Date deposited: 04 Oct 2013 08:42
  Last modified: 09 Mar 2022 02:36
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      Contributors
      
          
          Author:
          
            
            
              D. Barducci
            
          
        
      
        
      
          
          Author:
          
            
            
              S. De Curtis
            
          
        
      
        
      
          
          Author:
          
            
            
              G.M. Pruna
            
          
        
      
      
      
    
  
   
  
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