SMEFT ATLAS of $\Delta F=2$ Transitions
Jason Aebischer, Christoph Bobeth, Andrzej J. Buras, Jacky Kumar

TL;DR
This paper develops a comprehensive, model-independent framework within SMEFT to analyze $=2$ meson mixing transitions, providing master formulae and an operator atlas for beyond-LHC scale physics.
Contribution
It introduces two master formulae linking BSM contributions to meson mixing with SMEFT and LEFT Wilson coefficients, including renormalization effects and basis dependence.
Findings
Provides a detailed SMEFT ATLAS for $=2$ transitions.
Derives master formulae for mixing amplitudes at different scales.
Illustrates the approach with heavy gauge boson and scalar exchanges.
Abstract
We present a model-independent anatomy of the transitions , and in the context of the Standard Model Effective Field Theory (SMEFT). We present two master formulae for the mixing amplitude . One in terms of the Wilson coefficients (WCs) of the Low-Energy Effective Theory (LEFT) operators evaluated at the electroweak scale and one in terms of the WCs of the SMEFT operators evaluated at the BSM scale . The coefficients entering these formulae contain all the information below the scales and , respectively. Renormalization group effects from the top-quark Yukawa coupling play the most important role. The collection of the individual contributions of the SMEFT operators to can be considered as the SMEFT…
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