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Calculation of B[superscript 0] → K[superscript *0]μ[superscript +]μ[superscript -] and B[0 over s] → φμ[superscript +]μ[superscript -] Observables Using Form Factors from Lattice QCD

Author(s)
Horgan, Ronald R.; Liu, Zhaofeng; Meinel, Stefan; Wingate, Matthew
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Abstract
We calculate the differential branching fractions and angular distributions of the rare decays B[superscript 0] → K[superscript *0]μ[superscript +]μ[superscript -] and B[0 over s] → φμ[superscript +]μ[superscript -], using for the first time form factors from unquenched lattice QCD. We focus on the kinematic region where the K[superscript *] or ϕ recoils softly; there, the newly available form factors are most precise and the nonlocal matrix elements can be included via an operator product expansion. Our results for the differential branching fractions calculated in the standard model are higher than the experimental data. We consider the possibility that the deviations are caused by new physics and perform a fit of the Wilson coefficients C[subscript 9] and C[' over 9] to the experimental data for multiple B[superscript 0] → K[superscript *0]μ[superscript +]μ[superscript -] and B[0 over s] → φμ[superscript +]μ[superscript -] observables. In agreement with recent results from complementary studies, we obtain C[subscript 9] − C[SM over 9] = −1.0 ± 0.6 and C[' over 9] = 1.2 ± 1.0, whose deviations from zero would indicate the presence of nonstandard fundamental interactions.
Date issued
2014-05
URI
http://hdl.handle.net/1721.1/88622
Department
Massachusetts Institute of Technology. Center for Theoretical Physics; Massachusetts Institute of Technology. Laboratory for Nuclear Science
Journal
Physical Review Letters
Publisher
American Physical Society
Citation
Horgan, Ronald R., Zhaofeng Liu, Stefan Meinel, and Matthew Wingate. “Calculation of B[superscript 0] → K[superscript *0]μ[superscript +]μ[superscript -] and B[0 over s] → φμ[superscript +]μ[superscript -] Observables Using Form Factors from Lattice QCD.” Physical Review Letters 112, no. 21 (May 2014). © 2014 American Physical Society
Version: Final published version
ISSN
0031-9007
1079-7114

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