A manifestly gauge invariant, continuum calculation of the SU(N) Yang-Mills two-loop beta function
A manifestly gauge invariant, continuum calculation of the SU(N) Yang-Mills two-loop beta function
 
  The manifestly gauge invariant exact renormalization group provides a framework for performing continuum computations in SU(N) Yang-Mills theory, without fixing the gauge. We use this formalism to compute the two-loop beta function in a manifestly gauge invariant way, and without specifying the details of the regularization scheme.
  
  
  065003-[33pp]
  
    
      Morris, Tim R.
      
        a9927d31-7a12-4188-bc35-1c9d3a03a6a6
      
     
  
    
      Rosten, Oliver J.
      
        26ca1633-a7c7-418f-af0d-e65b4ec487ed
      
     
  
  
   
  
  
    
      March 2006
    
    
  
  
    
      Morris, Tim R.
      
        a9927d31-7a12-4188-bc35-1c9d3a03a6a6
      
     
  
    
      Rosten, Oliver J.
      
        26ca1633-a7c7-418f-af0d-e65b4ec487ed
      
     
  
       
    
 
  
    
      
  
  
  
  
  
  
    Morris, Tim R. and Rosten, Oliver J.
  
  
  
  
   
    (2006)
  
  
    
    A manifestly gauge invariant, continuum calculation of the SU(N) Yang-Mills two-loop beta function.
  
  
  
  
    Physical Review D, 73 (6), .
  
   (doi:10.1103/PhysRevD.73.065003). 
  
  
   
  
  
  
  
  
   
  
    
      
        
          Abstract
          The manifestly gauge invariant exact renormalization group provides a framework for performing continuum computations in SU(N) Yang-Mills theory, without fixing the gauge. We use this formalism to compute the two-loop beta function in a manifestly gauge invariant way, and without specifying the details of the regularization scheme.
        
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      Published date: March 2006
 
    
  
  
    
  
    
  
    
  
    
  
    
     
    
  
    
  
    
  
    
  
  
  
    
  
  
        Identifiers
        Local EPrints ID: 64249
        URI: http://eprints.soton.ac.uk/id/eprint/64249
        
          
        
        
        
          ISSN: 1550-7998
        
        
          PURE UUID: 020a7d99-eff4-441d-8ed7-991486e14db6
        
  
    
        
          
            
              
            
          
        
    
        
          
        
    
  
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  Date deposited: 15 Jan 2009
  Last modified: 16 Mar 2024 02:36
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      Contributors
      
        
      
          
          Author:
          
            
            
              Oliver J. Rosten
            
          
        
      
      
      
    
  
   
  
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