Isospin breaking corrections to the HVP with Domain Wall fermions
Isospin breaking corrections to the HVP with Domain Wall fermions
 
  We present results for the QED and strong isospin breaking corrections to the hadronic vacuum polarization using Nf = 2 + 1 Domain Wall fermions. QED is included in an electro-quenched setup using two different methods, a stochastic and a perturbative approach. Results and statistical errors from both methods are directly compared with each other.
      Boyle, Peter
      
        78a2aebf-aea7-4925-b5df-ead4b4da6fb2
      
     
  
    
      Guelpers, Vera
      
        ea31c3b1-2815-40ae-ae8f-3e3b4e742a49
      
     
  
    
      Harrison, James
      
        3bf4b4aa-9186-45bb-9888-87bf46284172
      
     
  
    
      Juettner, Andreas
      
        a90ff7c5-ae8f-4c8e-9679-b5a95b2a6247
      
     
  
    
      Lehner, Christoph
      
        ca2f6986-c2ac-47b4-87fb-ac9351447244
      
     
  
    
      Portelli, Antonin
      
        a2526d4a-144e-4095-802a-229cddb10f0f
      
     
  
    
      Sachrajda, Christopher
      
        0ed6568b-f52f-4314-8677-4aeeb925d6f7
      
     
  
  
   
  
  
    
    
  
    
    
  
  
    
      Boyle, Peter
      
        78a2aebf-aea7-4925-b5df-ead4b4da6fb2
      
     
  
    
      Guelpers, Vera
      
        ea31c3b1-2815-40ae-ae8f-3e3b4e742a49
      
     
  
    
      Harrison, James
      
        3bf4b4aa-9186-45bb-9888-87bf46284172
      
     
  
    
      Juettner, Andreas
      
        a90ff7c5-ae8f-4c8e-9679-b5a95b2a6247
      
     
  
    
      Lehner, Christoph
      
        ca2f6986-c2ac-47b4-87fb-ac9351447244
      
     
  
    
      Portelli, Antonin
      
        a2526d4a-144e-4095-802a-229cddb10f0f
      
     
  
    
      Sachrajda, Christopher
      
        0ed6568b-f52f-4314-8677-4aeeb925d6f7
      
     
  
       
    
 
  
    
      
  
  
  
  
  
  
    Boyle, Peter, Guelpers, Vera, Harrison, James, Juettner, Andreas, Lehner, Christoph, Portelli, Antonin and Sachrajda, Christopher
  
  
  
  
   
    (2018)
  
  
    
    Isospin breaking corrections to the HVP with Domain Wall fermions.
  
  
  
  
    EPJ Web of Conferences, 175, [06024].
  
   (doi:10.1051/epjconf/201817506024). 
  
  
   
  
  
  
  
  
   
  
    
    
      
        
          Abstract
          We present results for the QED and strong isospin breaking corrections to the hadronic vacuum polarization using Nf = 2 + 1 Domain Wall fermions. QED is included in an electro-quenched setup using two different methods, a stochastic and a perturbative approach. Results and statistical errors from both methods are directly compared with each other.
         
      
      
        
          
            
  
    Text
 epjconf_lattice2018_06024
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      Accepted/In Press date: 1 January 2018
 
    
      e-pub ahead of print date: 26 March 2018
 
    
  
  
    
  
    
  
    
  
    
  
    
  
    
  
    
  
    
  
  
        Identifiers
        Local EPrints ID: 420076
        URI: http://eprints.soton.ac.uk/id/eprint/420076
        
          
        
        
        
          ISSN: 2101-6275
        
        
          PURE UUID: a1639b7e-9a68-4c65-ab26-a553a31fc677
        
  
    
        
          
        
    
        
          
            
          
        
    
        
          
            
              
            
          
        
    
        
          
            
              
            
          
        
    
        
          
        
    
        
          
            
              
            
          
        
    
        
          
            
          
        
    
  
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  Date deposited: 26 Apr 2018 16:30
  Last modified: 06 Jun 2024 01:50
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      Contributors
      
          
          Author:
          
            
            
              Peter Boyle
            
          
        
      
          
          Author:
          
            
              
              
                Vera Guelpers
              
              
            
            
          
        
      
          
          Author:
          
            
              
              
                James Harrison
              
              
                 
              
            
            
          
         
      
        
      
          
          Author:
          
            
            
              Christoph Lehner
            
          
        
      
          
          Author:
          
            
              
              
                Antonin Portelli
              
              
                 
              
            
            
          
         
      
        
      
      
      
    
  
   
  
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