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Effective-field-theory predictions of the muon-deuteron capture rate

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arxiv 1806.09481 v2 pith:ZQBOQLMO submitted 2018-06-25 nucl-th nucl-ex

Effective-field-theory predictions of the muon-deuteron capture rate

classification nucl-th nucl-ex
keywords rateuncertaintiescapturetheoreticalthoseuncertaintyaxialeffective
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We quantify the theoretical uncertainties of chiral effective-field-theory predictions of the muon-deuteron capture rate. Theoretical error estimates of this low-energy process is important for a reliable interpretation of forthcoming experimental results by the MuSun collaboration. Specifically, we estimate the three dominant sources of uncertainties that impact theoretical calculations of this rate: those resulting from uncertainties in the pool of fit data used to constrain the coupling constants in the nuclear interaction, those due to the truncation of the effective field theory, and those due to uncertainties in the axial radius of the nucleon. For the capture rate into the ${}^1S_0$ channel, we find an uncertainty of approximately $4.6~s^{-1}$ due to the truncation in the effective field theory and an uncertainty of $3.9~s^{-1}$ due to the uncertainty in the axial radius of the nucleon, both of which are similar in size to the targeted experimental precision.

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