Parity-violating (PV) interactions among quarks in the nucleon induce a PV γNN coupling, or anapole moment (AM). We compute electroweak gauge-independent contributions to the AM through O(1/Λχ2) in chiral perturbation theory. We estimate short-distance PV effects using resonance saturation. The AM contributions to PV electron-proton scattering slightly enhance the axial vector radiative corrections, RAp, over the scale implied by the standard model when weak quark-quark interactions are neglected. We estimate the theoretical uncertainty associated with the AM contributions to RAp to be large, and discuss the implications for the interpretation PV of ep scattering
Radiative corrections to the parity-violating asymmetry measured in elastic electron-proton scatteri...
A generalized formula of nuclear anapole moment-is derived using the current relativistic nuclear ap...
The SAMPLE experiment at MIT-Bates provides measurements of parity-violating electron scattering at ...
Parity-violating (PV) interactions among quarks in the nucleon induce a PV γNN coupling, or anapole ...
We have measured parity-violating asymmetries in elastic electron-proton and quasielastic electron-d...
10 pages, 1 figure; contribution to the RIA workshop held at INT (Seattle), Sept. 19-21 (2007), to b...
A generalized formula of nuclear anapole moment is derived using the current relativistic nuclear ap...
Nuclear anapole moments are parity-odd, time-reversal-even E1 moments of the electromagnetic current...
Radiative corrections to the parity-violating asymmetry measured in elastic electron-proton scatteri...
Nuclear anapole moments are parity-odd, time-reversal-even E1 moments of the electromagnetic current...
The anapole moment is a parity-odd and time-reversal-even electromagnetic moment. Although it was co...
Since their advent, Parity Violating experiments have played a crucial role in testing the standard ...
We review the area of strange quark contributions to nucleon structure. In particular, we focus on c...
We present a calculation of the parity-violating longitudinal asymmetry in proton-proton scattering....
The anapole form factor of the nucleon is calculated in chiral perturbation theory in leading order....
Radiative corrections to the parity-violating asymmetry measured in elastic electron-proton scatteri...
A generalized formula of nuclear anapole moment-is derived using the current relativistic nuclear ap...
The SAMPLE experiment at MIT-Bates provides measurements of parity-violating electron scattering at ...
Parity-violating (PV) interactions among quarks in the nucleon induce a PV γNN coupling, or anapole ...
We have measured parity-violating asymmetries in elastic electron-proton and quasielastic electron-d...
10 pages, 1 figure; contribution to the RIA workshop held at INT (Seattle), Sept. 19-21 (2007), to b...
A generalized formula of nuclear anapole moment is derived using the current relativistic nuclear ap...
Nuclear anapole moments are parity-odd, time-reversal-even E1 moments of the electromagnetic current...
Radiative corrections to the parity-violating asymmetry measured in elastic electron-proton scatteri...
Nuclear anapole moments are parity-odd, time-reversal-even E1 moments of the electromagnetic current...
The anapole moment is a parity-odd and time-reversal-even electromagnetic moment. Although it was co...
Since their advent, Parity Violating experiments have played a crucial role in testing the standard ...
We review the area of strange quark contributions to nucleon structure. In particular, we focus on c...
We present a calculation of the parity-violating longitudinal asymmetry in proton-proton scattering....
The anapole form factor of the nucleon is calculated in chiral perturbation theory in leading order....
Radiative corrections to the parity-violating asymmetry measured in elastic electron-proton scatteri...
A generalized formula of nuclear anapole moment-is derived using the current relativistic nuclear ap...
The SAMPLE experiment at MIT-Bates provides measurements of parity-violating electron scattering at ...