Soft Collinear Effective Theory for Heavy QCD Axions
Deepanshu Bisht, Sabyasachi Chakraborty, Siddhartha Karmakar, Atanu Samanta
Abstract
We develop a soft-collinear effective theory (SCET) framework for heavy QCD axion, considering two low-energy realizations and taking B Ka as a benchmark mode. In the first realization, aG G is assumed to be the only independent axion interaction at the scale μ mb. We show that eliminating the redundant flavor-changing derivative-gluon operator in the weak effective theory generates a new dimension-seven axion operator identified as O∂ ag. We match this operator onto SCET and derive the corresponding leading-power soft and spectator-scattering contributions to B Ka. We obtain a factorized expression for the spectator contribution in terms of perturbative hard kernels and the B- and K-meson light-cone distribution amplitudes. The spectator contribution arises at the same order in the power expansion as the soft-overlap term and amounts to approximately 25\% of the soft contribution. In the second realization, the Wilson coefficient of aG G is assumed to be present above the electroweak scale. Renormalization-group evolution and matching then induce a direct b sa operator, which subsequently results in a dominant soft form-factor contribution, whereas the gluonic spectator term turns out to be numerically subleading ( 6-7\%). We thus identify the conditions under which spectator scattering becomes relevant for heavy-axion production in rare B-meson decays. Finally, we derive the corresponding bounds on the axion decay constant fa for both realizations and compare their phenomenological implications.
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