These proceedings summarize the progress which has been made within the Jülich Electric Dipole Moment Investigations (JEDI) Collaboration on deuteron beam polarimetry for a storage-ring electric-dipole-moment (EDM) measurement. The design of a dedicated EDM polarimeter requires a precise database for optimization purposes. To address this need, a measurement of a deuteron-carbon scattering database has been performed with the forward part of the WASA-at-COSY detector. Preliminary results for vector analyzing powers and unpolarized differential cross sections for different deuteron beam energies are presented
The Jülich ElectricDipole moment Investigation (JEDI) collaboration at Forschungszentrum Jülich...
Electric Dipole Moments (EDM) of elementary particles are considered to be one of the most powerful ...
The Standard Model (SM) of Particle Physics is not capable to account for the apparent matter-antima...
The Jülich Electric Dipole Investigation (JEDI) collaboration aims at the measurement of a charged p...
The Jülich Electric Dipole Investigation (JEDI) collaboration aims at the measurement of a charged p...
The JEDI (Jülich Electric Dipole moment Investigations) collaboration performsa set of experiments a...
The quest for new Physics constitutes one of the main endeavors in physics research. Searches for pe...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
Electric Dipole Moments (EDM) of elementary particles are considered to be one of the most powerful ...
One of the fundamental questions of modern particle physics is the existence of finite electricdipol...
The Jülich ElectricDipole moment Investigation (JEDI) collaboration at Forschungszentrum Jülich...
Electric Dipole Moments (EDM) of elementary particles are considered to be one of the most powerful ...
The Standard Model (SM) of Particle Physics is not capable to account for the apparent matter-antima...
The Jülich Electric Dipole Investigation (JEDI) collaboration aims at the measurement of a charged p...
The Jülich Electric Dipole Investigation (JEDI) collaboration aims at the measurement of a charged p...
The JEDI (Jülich Electric Dipole moment Investigations) collaboration performsa set of experiments a...
The quest for new Physics constitutes one of the main endeavors in physics research. Searches for pe...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
A finite electric dipole moment (EDM) in any fundamental system would constitute a signal for new ph...
Electric Dipole Moments (EDM) of elementary particles are considered to be one of the most powerful ...
One of the fundamental questions of modern particle physics is the existence of finite electricdipol...
The Jülich ElectricDipole moment Investigation (JEDI) collaboration at Forschungszentrum Jülich...
Electric Dipole Moments (EDM) of elementary particles are considered to be one of the most powerful ...
The Standard Model (SM) of Particle Physics is not capable to account for the apparent matter-antima...