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Constraints on the photon polarisation in b → sγ transitions using Bs0→ ϕe+e decays

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Peer-reviewed

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Abstract

Abstract

      An angular analysis of the 
          
            $$ {B}_s^0 $$
            
              
                B
                s
                0
              
            
          
        
        → ϕe
        +
        e
        
          −
         decay is performed using the proton-proton collision dataset collected between 2011 and 2018 by the LHCb experiment, corresponding to an integrated luminosity of 9 fb
          −1 at centre-of-mass energies of 7, 8 and 13 TeV. The analysis is performed in the very low dielectron invariant mass-squared region between 0.0009 and 0.2615 GeV2
        /c
        4. The longitudinal polarisation fraction of the ϕ meson is measured to be less than 11.5% at 90% confidence level. The 
          
            $$ {A}_{\textrm{T}}^{\mathcal{R} eCP} $$
            
              
                A
                T
                
                  R
                  eCP
                
              
            
          
         observable, which is related to the lepton forward-backward asymmetry, is measured to be 0.116 ± 0.155 ± 0.006, where the first uncertainty is statistical and the second systematic. The transverse asymmetries, 
          
            $$ {A}_{\textrm{T}}^{(2)} $$
            
              
                A
                T
                
                  2
                
              
            
          
         and 
          
            $$ {A}_{\textrm{T}}^{\mathcal{I} mCP} $$
            
              
                A
                T
                
                  I
                  mCP
                
              
            
          
        , which are sensitive to the virtual photon polarisation, are found to be −0.045 ± 0.235 ± 0.014 and 0.002 ± 0.247 ± 0.016, respectively. The results are consistent with Standard Model predictions.

Description

Journal Title

Journal of High Energy Physics

Conference Name

Journal ISSN

1126-6708
1029-8479

Volume Title

2025

Publisher

Springer Science and Business Media LLC

Rights and licensing

Except where otherwised noted, this item's license is described as http://creativecommons.org/licenses/by/4.0/