The soft supersymmetry-breaking Lagrangian: theory and applications
The soft supersymmetry-breaking Lagrangian: theory and applications
 
  After an introduction recalling the theoretical motivation for low energy (100 GeV to TeV scale) supersymmetry, this review describes the theory and experimental implications of the soft supersymmetry-breaking Lagrangian of the general minimal supersymmetric standard model (MSSM). Extensions to include neutrino masses and nonminimal theories are also discussed. Topics covered include models of supersymmetry breaking, phenomenological constraints from electroweak symmetry breaking, flavor/CP violation, collider searches, and cosmological constraints including dark matter and implications for baryogenesis and inflation.
  
  
  1-203
  
    
      Chung, D.J.H.
      
        7f79dc71-6241-401d-b635-7a64c4e0b4c1
      
     
  
    
      Everett, L.L.
      
        4d409bb5-4593-4332-b4aa-05678253f0b4
      
     
  
    
      Kane, G.L.
      
        3629b271-2d86-445d-af04-c37936e8f74f
      
     
  
    
      King, S.F.
      
        f8c616b7-0336-4046-a943-700af83a1538
      
     
  
    
      Lykken, J.
      
        aecee906-32e5-444e-bccc-ed6208b0aa30
      
     
  
    
      Wang, L-T.
      
        896b018f-4d21-4aa7-8b60-54cae563c46b
      
     
  
  
   
  
  
    
      February 2005
    
    
  
  
    
      Chung, D.J.H.
      
        7f79dc71-6241-401d-b635-7a64c4e0b4c1
      
     
  
    
      Everett, L.L.
      
        4d409bb5-4593-4332-b4aa-05678253f0b4
      
     
  
    
      Kane, G.L.
      
        3629b271-2d86-445d-af04-c37936e8f74f
      
     
  
    
      King, S.F.
      
        f8c616b7-0336-4046-a943-700af83a1538
      
     
  
    
      Lykken, J.
      
        aecee906-32e5-444e-bccc-ed6208b0aa30
      
     
  
    
      Wang, L-T.
      
        896b018f-4d21-4aa7-8b60-54cae563c46b
      
     
  
       
    
 
  
    
      
  
  
  
  
  
  
    Chung, D.J.H., Everett, L.L., Kane, G.L., King, S.F., Lykken, J. and Wang, L-T.
  
  
  
  
   
    (2005)
  
  
    
    The soft supersymmetry-breaking Lagrangian: theory and applications.
  
  
  
  
    Physics Reports, 407 (1-3), .
  
   (doi:10.1016/j.physrep.2004.08.032). 
  
  
   
  
  
  
  
  
   
  
    
      
        
          Abstract
          After an introduction recalling the theoretical motivation for low energy (100 GeV to TeV scale) supersymmetry, this review describes the theory and experimental implications of the soft supersymmetry-breaking Lagrangian of the general minimal supersymmetric standard model (MSSM). Extensions to include neutrino masses and nonminimal theories are also discussed. Topics covered include models of supersymmetry breaking, phenomenological constraints from electroweak symmetry breaking, flavor/CP violation, collider searches, and cosmological constraints including dark matter and implications for baryogenesis and inflation.
        
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      Published date: February 2005
 
    
  
  
    
  
    
  
    
  
    
  
    
  
    
  
    
  
    
  
  
        Identifiers
        Local EPrints ID: 57152
        URI: http://eprints.soton.ac.uk/id/eprint/57152
        
          
        
        
        
          ISSN: 0370-1573
        
        
          PURE UUID: 9d8f52d1-0ae1-4668-8f6a-c94489ed1954
        
  
    
        
          
        
    
        
          
        
    
        
          
        
    
        
          
            
          
        
    
        
          
        
    
        
          
        
    
  
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  Date deposited: 14 Aug 2008
  Last modified: 15 Mar 2024 11:05
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      Contributors
      
          
          Author:
          
            
            
              D.J.H. Chung
            
          
        
      
          
          Author:
          
            
            
              L.L. Everett
            
          
        
      
          
          Author:
          
            
            
              G.L. Kane
            
          
        
      
        
      
          
          Author:
          
            
            
              J. Lykken
            
          
        
      
          
          Author:
          
            
            
              L-T. Wang
            
          
        
      
      
      
    
  
   
  
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