The Relativistic Heavy Ion Collider forward experiment is ready to take data in the RHIC Run2017 root s = 510 GeV p-p collisions using the LHCf Arm1 detector. New accelerator data are valuable to verify the Feynman scaling of pi(0) production and to study the evolution of the break of scaling in neutron production. Using the transversely polarized proton beam, asymmetric production of forward neutrons is precisely measured. That is useful to understand the fundamental meson exchange in the proton-proton collisions.
RHIC forward experiment to study √sdependence of forward particle production / Sako, T.; Adriani, O.; Bonechi, L.; D'Alessandro, R.; Goto, Y.; Itow, Y.; Kasahara, K.; Kim, M.; Makino, Y.; Matsubayashi, E.; Menjo, H.; Nakagawa, I.; Park, J.; Sakurai, N.; Sato, K.; Seidl, R.; Shinoda, M.; Suzuki, T.; Tanida, K.; Torii, S.; Tricomi, A.; Ueno, M.; Zhou, Q.D.. - In: EPJ WEB OF CONFERENCES. - ISSN 2100-014X. - ELETTRONICO. - 145:(2017), pp. 10005-1-10005-4. [10.1051/epjconf/201714510005]
RHIC forward experiment to study √sdependence of forward particle production
Adriani, O.;Bonechi, L.;D'Alessandro, R.;Tricomi, A.;
2017
Abstract
The Relativistic Heavy Ion Collider forward experiment is ready to take data in the RHIC Run2017 root s = 510 GeV p-p collisions using the LHCf Arm1 detector. New accelerator data are valuable to verify the Feynman scaling of pi(0) production and to study the evolution of the break of scaling in neutron production. Using the transversely polarized proton beam, asymmetric production of forward neutrons is precisely measured. That is useful to understand the fundamental meson exchange in the proton-proton collisions.File | Dimensione | Formato | |
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