Accès ouvert
2024
article
OpenAlex
N. J. Abdulameer, U. Acharya, A. Adare, C. Aidala et autres
The invariant yield of electrons from open-heavy-flavor decays for $1<{p}_{T}<8$ GeV/$c$ at midrapidity $|y|<0.35$ in $\mathrm{Au}+\mathrm{Au}$ collisions at $\sqrt{{s}_{{}_{NN}}}$ = 200 GeV has been measured by the PHENIX experiment at the BNL Relativistic Heavy Ion Collider. A displaced-vertex analysis with the PHENIX …
hu, us, in, jp, ru, kr, il, cz
(code pays fourni par la source)
Accès ouvert
2022
preprint
OpenAlex
U. A. Acharya, A. Adare, C. Aidala, N. N. Ajitanand et autres
The invariant yield of electrons from open-heavy-flavor decays for $1
us, in, fr, ru, jp, mx, hu, cz, kr
(code pays fourni par la source)
Accès ouvert
2022
article
OpenAlex
U. A. Acharya, C. Aidala, Y. Akiba, M. Alfred et autres
In 2015 the PHENIX collaboration at the Relativistic Heavy Ion Collider recorded $p+p$, $p+\mathrm{Al}$, and $p+\mathrm{Au}$ collision data at center of mass energies of $\sqrt{{s}_{NN}}=200\text{ }\text{ }\mathrm{GeV}$ with the proton beam(s) transversely polarized. At very forward rapidities $\ensuremath{\eta}>6.8$ relative to the polarized …
us, jp, ru, kr, il, hu, cz, in
(code pays fourni par la source)
Accès ouvert
2019
article
OpenAlex
C. Aidala, Y. Akiba, M. Alfred, V. Andrieux et autres
We report on the nuclear dependence of transverse single-spin asymmetries (TSSAs) in the production of positively charged hadrons in polarized ${p}^{\ensuremath{\uparrow}}+p$, ${p}^{\ensuremath{\uparrow}}+\mathrm{Al}$, and ${p}^{\ensuremath{\uparrow}}+\mathrm{Au}$ collisions at $\sqrt{{s}_{NN}}=200\text{ }\text{ }\mathrm{GeV}$. The measurements have been performed at forward rapidity ($1.4<\ensuremath{\eta}<2.4$) over the range of …
us, jp, ru, kr, il, hu, cz, in
(code pays fourni par la source)
Accès ouvert
2014
preprint
OpenAlex
PHENIX Collaboration, A. Adare, C. Aidala, N. N. Ajitanand et autres
The PHENIX collaboration presents here a concept for a detector at a future Electron Ion Collider (EIC). The EIC detector proposed here, referred to as ePHENIX, will have excellent performance for a broad range of exciting EIC physics measurements, providing powerful investigations …