25–29 Sept 2017
Salamanca, Spain
Europe/Zurich timezone

Deeply Virtual Compton Scattering off 4 He: Toward the 3D Tomography of the Atomic Nuclei

27 Sept 2017, 09:00
25m
Auditorium

Auditorium

Talk QCD and hadron structure QCD and hadron structure

Speaker

Raphael Dupre (IPN Orsay)

Description

We will report on the first measurement of the beam-spin asymmetry in the exclusive process of coherent deeply virtual Compton scattering off a nucleus. The experiment used the 6 GeV electron beam from the CEBAF accelerator at
Jefferson Lab incident on a pressurized $^4$He gaseous target placed in front of the CEBAF Large Acceptance Spectrometer (CLAS). The scattered electron was detected by CLAS and the photon by a dedicated electromagnetic calorimeter at forward angles. To ensure the exclusivity of the process, a specially designed radial time projection
chamber was used to detect the recoiling $^4$He nuclei. We measured beam-spin asymmetries larger than those observed on the free proton in the same kinematic domain. From these, we were able to extract, in a model-independent way, the real and imaginary parts of the only $^4$He Compton form factor, $\cal H_A$. We will conclude with our prospects to extend this experiment at JLab 12 GeV to access both quarks and gluons distributions in the nucleus.

Author

Raphael Dupre (IPN Orsay)

Presentation materials