The proton charge-radius determinations from the electromagnetic form-factor measurements in electron-proton (ep) scattering require an extrapolation to zero momentum transfer Q² = 0 which is prone to model-dependent assumptions. We show that the data at finite momentum transfer can be used to establish a rigorous lower bound on the proton charge radius, while bypassing the model-dependent assumptions that go into the fitting and extrapolation of the ep data. The near-future precise ep experiments at very low Q², such as PRad, are expected to set a stringent lower bound on the proton radius
We analyze the recent electron-proton scattering data from Mainz using a dispersive framework that r...
The static properties of hadrons, such as their radii and other moments of the electric and magnetic...
We show that in previous analyses of electron–proton scattering, the uncertainties in the statistica...
We determine the charge radius of the proton by analyzing the published low momentum transfer electr...
We show that in previous analyses of electron–proton scattering, the uncertainties in the statistica...
AbstractWe show that in previous analyses of electron–proton scattering, the uncertainties in the st...
The proton charge radius is a fundamental property of the proton, sensitive to its charge distributi...
Triggered by the discrepancy between electron-proton scattering and muonic hydrogen results we scrut...
We have analyzed the proton form factor data by using a number of phenomenological parameterizations...
International audienceThe dimension of the proton, the basic building block of matter, is still obje...
We extract the proton magnetic radius from high-precision electron-proton elastic scattering cross s...
The rms-radius R of the proton charge distribution is a fundamental quantity needed for precision ph...
Due to the peculiar shape of the proton charge density ρ(r) the value of the rms-radius r rms determ...
We present a novel method for extracting the proton radius from elastic electron-proton (ep) scatter...
International audienceThe question of the determination of the proton charge radius $R_{p}$ from ele...
We analyze the recent electron-proton scattering data from Mainz using a dispersive framework that r...
The static properties of hadrons, such as their radii and other moments of the electric and magnetic...
We show that in previous analyses of electron–proton scattering, the uncertainties in the statistica...
We determine the charge radius of the proton by analyzing the published low momentum transfer electr...
We show that in previous analyses of electron–proton scattering, the uncertainties in the statistica...
AbstractWe show that in previous analyses of electron–proton scattering, the uncertainties in the st...
The proton charge radius is a fundamental property of the proton, sensitive to its charge distributi...
Triggered by the discrepancy between electron-proton scattering and muonic hydrogen results we scrut...
We have analyzed the proton form factor data by using a number of phenomenological parameterizations...
International audienceThe dimension of the proton, the basic building block of matter, is still obje...
We extract the proton magnetic radius from high-precision electron-proton elastic scattering cross s...
The rms-radius R of the proton charge distribution is a fundamental quantity needed for precision ph...
Due to the peculiar shape of the proton charge density ρ(r) the value of the rms-radius r rms determ...
We present a novel method for extracting the proton radius from elastic electron-proton (ep) scatter...
International audienceThe question of the determination of the proton charge radius $R_{p}$ from ele...
We analyze the recent electron-proton scattering data from Mainz using a dispersive framework that r...
The static properties of hadrons, such as their radii and other moments of the electric and magnetic...
We show that in previous analyses of electron–proton scattering, the uncertainties in the statistica...