The investigation of the fundamental properties of the nucleon is one of the most important topics in the modern hadron physics. Its internal structure and dynamics can be studied through the measurement of electromagnetic form factors which represent the simplest structure observables and serve as a test ground for our understanding of the strong interaction. Since the first attempt to measure the time-like form factors of the neutron, only four experiments published results on its structure from annihilation reactions. Due to the lack of statistics and experimental challenges, no individual determination of the form factors of the neutron has been possible so far. Modern developments of electron-positron colliders and the associated detec...
The overwhelming majority of visible mass in the universe is composed of protons and neutrons, colle...
The nucleon elastic electromagnetic form factors are fundamental quantities needed for an understand...
The BESIII experiment, operated at the BEPCII e+e- collider in Beijing, has acquired large data sets...
The investigation of the fundamental properties of the nucleon is one of the most important topics i...
The complicated structure of the neutron cannot be calculated using first-principles calculations du...
Here we present new results for the Born cross section and the effective form factor of the neutron ...
Electromagnetic form factors are fundamental quantities which parameterize the electric and magnetic...
The final results of the FENICE experiment on the first measurement of the neutron time-like form fa...
This contribution reports on the recent measurements of baryon electromagnetic form factors at the B...
The electromagnetic form factors of the neutron in the time-like region have been measured for the f...
Electromagnetic form factors allow to investigate fundamental properties of the baryons. The BES...
We report recent results of Nucleon Electromagnetic Form Factors at the BESIII experiment. The BESII...
The electromagnetic form factor of the neutron has been measured for the first time by the FENICE ex...
The nucleon elastic electromagnetic form factors are fundamental quantities needed for an understand...
For over 100 y, scientists have investigated the properties of the proton, which is one of the most ...
The overwhelming majority of visible mass in the universe is composed of protons and neutrons, colle...
The nucleon elastic electromagnetic form factors are fundamental quantities needed for an understand...
The BESIII experiment, operated at the BEPCII e+e- collider in Beijing, has acquired large data sets...
The investigation of the fundamental properties of the nucleon is one of the most important topics i...
The complicated structure of the neutron cannot be calculated using first-principles calculations du...
Here we present new results for the Born cross section and the effective form factor of the neutron ...
Electromagnetic form factors are fundamental quantities which parameterize the electric and magnetic...
The final results of the FENICE experiment on the first measurement of the neutron time-like form fa...
This contribution reports on the recent measurements of baryon electromagnetic form factors at the B...
The electromagnetic form factors of the neutron in the time-like region have been measured for the f...
Electromagnetic form factors allow to investigate fundamental properties of the baryons. The BES...
We report recent results of Nucleon Electromagnetic Form Factors at the BESIII experiment. The BESII...
The electromagnetic form factor of the neutron has been measured for the first time by the FENICE ex...
The nucleon elastic electromagnetic form factors are fundamental quantities needed for an understand...
For over 100 y, scientists have investigated the properties of the proton, which is one of the most ...
The overwhelming majority of visible mass in the universe is composed of protons and neutrons, colle...
The nucleon elastic electromagnetic form factors are fundamental quantities needed for an understand...
The BESIII experiment, operated at the BEPCII e+e- collider in Beijing, has acquired large data sets...