The electromagnetic form factor of the pion is calculated in the "point-form" of relativistic quantum mechanics using simple, phenomenological wave functions. It is found that the squared charge radius of the pion is predicted one order of magnitude larger than the experimental value and the asymptotic behavior expected from QCD cannot be reproduced. The origin of these discrepancies is analyzed. The present results confirm previous ones obtained from a theoretical model and call for major improvements in the implementation of the "point-form" approach
The electromagnetic form factor of a confined quark-antiquark pair is calculated ...
Recent data from high-statistics experiments that have measured the modulus of the pion electromagne...
International audienceElectromagnetic and Lorentz-scalar form factors are calculated for a bound sys...
The electromagnetic form factor of the pion is calculated in the "point-form" of relativistic quantu...
The electromagnetic form factor of the pion is calculated in the "point-form" of relativistic quantu...
AbstractThe electromagnetic form factor of the pion is calculated in the “point-form” of relativisti...
The pion form factor calculation in the ``point-form'' of relativistic quantum mechanics is re-consi...
30 pages, 10 figuresThe pion charge and scalar form factors, $F_1(Q^2)$ and $F_0(Q^2)$, are first ca...
The role of Poincaré covariant space-time translations is investigated in the case of a relativistic...
We use a version of the instant-form relativistic quantum mechanics of composite systems to obtain t...
The form factor of hadronic systems in various forms of relativistic quantum mechanics is considered...
Electromagnetic and Lorentz-scalar form factors are calculated for a bound system of two spin-less p...
We study the constraints arising on the expansion parameters c and d of the pion electromagnetic for...
30 pages, 10 figuresThe pion charge and scalar form factors, $F_1(Q^2)$ and $F_0(Q^2)$, are first ca...
We study the constraints arising on the expansion parameters c and d of the pion electromagnetic for...
The electromagnetic form factor of a confined quark-antiquark pair is calculated ...
Recent data from high-statistics experiments that have measured the modulus of the pion electromagne...
International audienceElectromagnetic and Lorentz-scalar form factors are calculated for a bound sys...
The electromagnetic form factor of the pion is calculated in the "point-form" of relativistic quantu...
The electromagnetic form factor of the pion is calculated in the "point-form" of relativistic quantu...
AbstractThe electromagnetic form factor of the pion is calculated in the “point-form” of relativisti...
The pion form factor calculation in the ``point-form'' of relativistic quantum mechanics is re-consi...
30 pages, 10 figuresThe pion charge and scalar form factors, $F_1(Q^2)$ and $F_0(Q^2)$, are first ca...
The role of Poincaré covariant space-time translations is investigated in the case of a relativistic...
We use a version of the instant-form relativistic quantum mechanics of composite systems to obtain t...
The form factor of hadronic systems in various forms of relativistic quantum mechanics is considered...
Electromagnetic and Lorentz-scalar form factors are calculated for a bound system of two spin-less p...
We study the constraints arising on the expansion parameters c and d of the pion electromagnetic for...
30 pages, 10 figuresThe pion charge and scalar form factors, $F_1(Q^2)$ and $F_0(Q^2)$, are first ca...
We study the constraints arising on the expansion parameters c and d of the pion electromagnetic for...
The electromagnetic form factor of a confined quark-antiquark pair is calculated ...
Recent data from high-statistics experiments that have measured the modulus of the pion electromagne...
International audienceElectromagnetic and Lorentz-scalar form factors are calculated for a bound sys...