Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5495155 | Physics Letters B | 2017 | 5 Pages |
Abstract
TeV-scale lepton number violation can affect neutrinoless double beta decay through dimension-9 ÎL=ÎI=2 operators involving two electrons and four quarks. Since the dominant effects within a nucleus are expected to arise from pion exchange, the ÏââÏ+ee matrix elements of the dimension-9 operators are a key hadronic input. In this letter we provide estimates for the ÏââÏ+ matrix elements of all Lorentz scalar ÎI=2 four-quark operators relevant to the study of TeV-scale lepton number violation. The analysis is based on chiral SU(3) symmetry, which relates the ÏââÏ+ matrix elements of the ÎI=2 operators to the K0âK¯0 and KâÏÏ matrix elements of their ÎS=2 and ÎS=1 chiral partners, for which lattice QCD input is available. The inclusion of next-to-leading order chiral loop corrections to all symmetry relations used in the analysis makes our results robust at the 30% level or better, depending on the operator.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Nuclear and High Energy Physics
Authors
V. Cirigliano, W. Dekens, M. Graesser, E. Mereghetti,