The difference between the electromagnetic self-energies of proton and neutron can be calculated with the Cottingham formula, which expresses the self-energies as an integral over the electroproduction cross sections – provided the nucleon matrix elements of the current commutator do not contain a fixed pole. We show that, under the same proviso, the subtraction function occurring in the dispersive representation of the virtual Compton forward scattering amplitude is determined by the cross sections. The representation in particular leads to a parameter-free sum rule for the nucleon polarisabilities. We evaluate the sum rule for the difference between the electric polarisabilities of proton and neutron by means of the available parameterisa...
The nuclear electric polarizability is theoretically analyzed using a sum rule derived from the long...
We update the determination of the isovector nucleon electromagnetic self-energy, valid to leading o...
We update the determination of the isovector nucleon electromagnetic self-energy, valid to leading o...
The difference between the electromagnetic selfenergies of proton and neutron can be calculated with...
The difference between the electromagnetic selfenergies of proton and neutron can be calculated with...
The difference between the electromagnetic selfenergies of proton and neutron can be calculated with...
The difference between the electromagnetic selfenergies of proton and neutron can be calculated with...
The difference between the electromagnetic selfenergies of proton and neutron can be calculated with...
The difference between the electromagnetic self-energies of proton and neutron can be calculated wit...
The difference between the electromagnetic self-energies of proton and neutron can be calculated wit...
The difference between the electromagnetic self-energies of proton and neutron can be calculated wit...
The Cottingham formula expresses the leading contribution of the electromagnetic interaction to the ...
We provide an update of the determination of the electromagnetic self-energy contribution to Mp−Mn b...
It is shown that there is a simple connection between the slope, at q2 = 0, of the longitudinal Comp...
We update the determination of the isovector nucleon electromagnetic self-energy, valid to leading o...
The nuclear electric polarizability is theoretically analyzed using a sum rule derived from the long...
We update the determination of the isovector nucleon electromagnetic self-energy, valid to leading o...
We update the determination of the isovector nucleon electromagnetic self-energy, valid to leading o...
The difference between the electromagnetic selfenergies of proton and neutron can be calculated with...
The difference between the electromagnetic selfenergies of proton and neutron can be calculated with...
The difference between the electromagnetic selfenergies of proton and neutron can be calculated with...
The difference between the electromagnetic selfenergies of proton and neutron can be calculated with...
The difference between the electromagnetic selfenergies of proton and neutron can be calculated with...
The difference between the electromagnetic self-energies of proton and neutron can be calculated wit...
The difference between the electromagnetic self-energies of proton and neutron can be calculated wit...
The difference between the electromagnetic self-energies of proton and neutron can be calculated wit...
The Cottingham formula expresses the leading contribution of the electromagnetic interaction to the ...
We provide an update of the determination of the electromagnetic self-energy contribution to Mp−Mn b...
It is shown that there is a simple connection between the slope, at q2 = 0, of the longitudinal Comp...
We update the determination of the isovector nucleon electromagnetic self-energy, valid to leading o...
The nuclear electric polarizability is theoretically analyzed using a sum rule derived from the long...
We update the determination of the isovector nucleon electromagnetic self-energy, valid to leading o...
We update the determination of the isovector nucleon electromagnetic self-energy, valid to leading o...