Slepton production from gauge boson fusion
Slepton production from gauge boson fusion
 
  We emphasize that charged slepton pairs produced via vector-boson fusion along with two high-mass, high-pT forward and backward jets (in two opposite hemispheres) can have a higher production cross section for heavy slepton masses than that from conventional Drell-Yan production at a hadronic collider such as the CERN LHC. We analyze the signal and leading backgrounds in detail in the minimal supersymmetric standard model with conserved baryon and lepton numbers. Our investigation reveals that the mass reach of the vector-boson fusion channel is certainly an improvement over the scope of the Drell-Yan mode.
  
  
  075007-[8pp]
  
    
      Choudhury, D.
      
        1c37fa73-93ca-4449-94ae-1c0e04f9bc07
      
     
  
    
      Datta, A.
      
        6de2211f-524f-443b-9a09-ee64820f7b7f
      
     
  
    
      Huitu, K.
      
        21a9e237-cc75-479e-a8ea-84f07e1f68ae
      
     
  
    
      Konar, P.
      
        73d9550e-f03a-4ff6-98b1-f811b804ee00
      
     
  
    
      Moretti, S.
      
        b57cf0f0-4bc3-4e02-96e3-071255366614
      
     
  
    
      Mukhopadhyaya, B.
      
        75c25b82-11d4-4181-93c7-9b2417501494
      
     
  
  
   
  
  
    
    
  
    
      24 October 2003
    
    
  
  
    
      Choudhury, D.
      
        1c37fa73-93ca-4449-94ae-1c0e04f9bc07
      
     
  
    
      Datta, A.
      
        6de2211f-524f-443b-9a09-ee64820f7b7f
      
     
  
    
      Huitu, K.
      
        21a9e237-cc75-479e-a8ea-84f07e1f68ae
      
     
  
    
      Konar, P.
      
        73d9550e-f03a-4ff6-98b1-f811b804ee00
      
     
  
    
      Moretti, S.
      
        b57cf0f0-4bc3-4e02-96e3-071255366614
      
     
  
    
      Mukhopadhyaya, B.
      
        75c25b82-11d4-4181-93c7-9b2417501494
      
     
  
       
    
 
  
    
      
  
  
  
  
  
  
    Choudhury, D., Datta, A., Huitu, K., Konar, P., Moretti, S. and Mukhopadhyaya, B.
  
  
  
  
   
    (2003)
  
  
    
    Slepton production from gauge boson fusion.
  
  
  
  
    Physical Review D, 68 (7), .
  
   (doi:10.1103/PhysRevD.68.075007). 
  
  
   
  
  
  
  
  
   
  
    
      
        
          Abstract
          We emphasize that charged slepton pairs produced via vector-boson fusion along with two high-mass, high-pT forward and backward jets (in two opposite hemispheres) can have a higher production cross section for heavy slepton masses than that from conventional Drell-Yan production at a hadronic collider such as the CERN LHC. We analyze the signal and leading backgrounds in detail in the minimal supersymmetric standard model with conserved baryon and lepton numbers. Our investigation reveals that the mass reach of the vector-boson fusion channel is certainly an improvement over the scope of the Drell-Yan mode.
        
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      Submitted date: 23 April 2003
 
    
      Published date: 24 October 2003
 
    
  
  
    
  
    
  
    
  
    
  
    
  
    
  
    
  
    
  
  
        Identifiers
        Local EPrints ID: 57144
        URI: http://eprints.soton.ac.uk/id/eprint/57144
        
          
        
        
        
          ISSN: 1550-7998
        
        
          PURE UUID: 9ca221f8-4df9-4708-93b6-46918c1d44c8
        
  
    
        
          
        
    
        
          
        
    
        
          
        
    
        
          
        
    
        
          
            
              
            
          
        
    
        
          
        
    
  
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  Date deposited: 14 Aug 2008
  Last modified: 16 Mar 2024 03:34
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      Contributors
      
          
          Author:
          
            
            
              D. Choudhury
            
          
        
      
          
          Author:
          
            
            
              A. Datta
            
          
        
      
          
          Author:
          
            
            
              K. Huitu
            
          
        
      
          
          Author:
          
            
            
              P. Konar
            
          
        
      
        
      
          
          Author:
          
            
            
              B. Mukhopadhyaya
            
          
        
      
      
      
    
  
   
  
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