We describe our method for deriving the nuclear electromagnetic charge and current operators in chiral perturbation theory, based on time-ordered perturbation theory. We then discuss possible strategies for fixing the relevant low-energy constants, from the magnetic moments of the deuteron and of the trinucleons, and from the radiative np capture cross sections, and identify a scheme which, partly relying on {Delta} resonance saturation, leads to a reasonable pattern of convergence of the chiral expansion
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We describe our method for deriving the nuclear electromagnetic charge and current operators in chir...
We review our recent work on the derivation of the nuclear electromagnetic charge and current operat...
We review our recent work on the derivation of the nuclear electromagnetic charge and current operat...
Recently, we have shown that the continuity equation for the nuclear vector and axial current operat...
In this article, we review the status of the calculation of nuclear currents within chiral effective...
In this article, we review the status of the calculation of nuclear currents within chiral effective...
Recently, we have derived a two nucleon potential and consistent nuclear electromagnetic currents in...
We review our recent work on the derivation of the nuclear electromagnetic charge and current operat...
The electromagnetic charge operator in a two-nucleon system is derived in chiral effective field the...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
I summarize two recent applications of chiral perturbation theory to electromagnetic reactions on de...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We describe our method for deriving the nuclear electromagnetic charge and current operators in chir...
We review our recent work on the derivation of the nuclear electromagnetic charge and current operat...
We review our recent work on the derivation of the nuclear electromagnetic charge and current operat...
Recently, we have shown that the continuity equation for the nuclear vector and axial current operat...
In this article, we review the status of the calculation of nuclear currents within chiral effective...
In this article, we review the status of the calculation of nuclear currents within chiral effective...
Recently, we have derived a two nucleon potential and consistent nuclear electromagnetic currents in...
We review our recent work on the derivation of the nuclear electromagnetic charge and current operat...
The electromagnetic charge operator in a two-nucleon system is derived in chiral effective field the...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
I summarize two recent applications of chiral perturbation theory to electromagnetic reactions on de...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...
We set up the framework for the calculation of electric dipole moments (EDMs) of light nuclei using ...