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.

Primary author

Raphael Dupre (IPN Orsay)

Presentation materials