Limits on tensor type weak currents from nuclear and neutron ~decays
arXiv:1306.2608 · doi:10.1103/PhysRevC.89.025501
Abstract
The limits on time-reversal invariant tensor-type weak currents from nuclear and neutron decays are evaluated including most recent experimental data. We find that and (90% C.L.), while for the case the limits are . These limits are shown to be more stringent than those from recent measurements of the radiative pion decay. In addition, the sensitivity of future -level correlation measurements is investigated.
References in corpus (18)
- Superallowed 0+ to 0+ nuclear beta decays: A new survey with precision tests of the conserved vector current hypothesis and the standard model
- Tests of the standard electroweak model in beta decay
- Beta Decays and Non-Standard Interactions in the LHC Era
- Non-standard Charged Current Interactions: beta decays versus the LHC
- Form Factors in the radiative pion decay
- Precision Measurement of the Neutron Beta-Decay Asymmetry
- Isospin breaking in the nucleon mass and the sensitivity of beta decays to new physics
- New Precise Measurement of the Pion Weak Form Factors in the Pi+ -> e+ nu gamma Decay
- Standard Model tests with trapped radioactive atoms
- Determination of the Axial-Vector Weak Coupling Constant with Ultracold Neutrons
- Measurement of the neutron -asymmetry parameter with ultracold neutrons
- Supersymmetric Contributions to Weak Decay Correlation Coefficients
- Tensor interaction constraints from beta decay recoil spin asymmetry of trapped atoms
- Precision measurements of the Co -asymmetry parameter in search for tensor currents in weak interactions
- Limits on Tensor Coupling from Neutron -Decay
- Neutrino mass constraints on beta decay
- Measurement of the half-life of 198Au in a non-metal: High-precision measurement shows no host-material dependence
- Prospects for precision measurements in nuclear beta decay at the LHC era
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- Symmetry violations in nuclear and neutron decay
- Particle Physics at the European Spallation Source
- Improved limits on Fierz Interference using asymmetry measurements from the UCNA experiment
- Kinematic sensitivity to the Fierz term of -decay differential spectra
- Limit on the Fierz Interference Term b from a Measurement of the Beta Asymmetry in Neutron Decay
- Measurement of the half-life of the T= mirror decay of Ne and its implication on physics beyond the standard model
- First direct constraints on Fierz interference in free neutron decay
- Measurement of the -asymmetry parameter of Cu in search for tensor type currents in the weak interaction
- Detection System for Neutron Decay Correlations in the UCNB and Nab experiments
- Precision pulse shape simulation for proton detection at the Nab experiment
- Helicity and nuclear decay correlations
- The Tensor and the Scalar Charges of the Nucleon from Hadron Phenomenology
- in K decay: new physics with opposite helicity
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