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  • navigation:Result_t 1-10 navigation:of_t 184
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1.
  • Kanai, M, et al. (creator_code:aut_t)
  • 2023
  • swepub:Mat__t
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2.
  • 2017
  • swepub:Mat__t
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3.
  • Niemi, MEK, et al. (creator_code:aut_t)
  • 2021
  • swepub:Mat__t
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4.
  • 2021
  • swepub:Mat__t
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5.
  • Tabiri, S, et al. (creator_code:aut_t)
  • 2021
  • swepub:Mat__t
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6.
  • Bravo, L, et al. (creator_code:aut_t)
  • 2021
  • swepub:Mat__t
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7.
  • Glasbey, JC, et al. (creator_code:aut_t)
  • 2021
  • swepub:Mat__t
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8.
  • 2021
  • swepub:Mat__t
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9.
  • Adare, A., et al. (creator_code:aut_t)
  • Measurements of Elliptic and Triangular Flow in High-Multiplicity He-3 + Au Collisions at root s(NN)=200 GeV
  • 2015
  • record:In_t: Physical Review Letters. - 1079-7114. ; 115:14
  • swepub:Mat_article_t (swepub:level_refereed_t)abstract
    • We present the first measurement of elliptic (v(2)) and triangular (v(3)) flow in high-multiplicity He-3 + Au collisions at root s(NN) = 200 GeV. Two-particle correlations, where the particles have a large separation in pseudorapidity, are compared in He-3 + Au and in p + p collisions and indicate that collective effects dominate the second and third Fourier components for the correlations observed in the He-3 + Au system. The collective behavior is quantified in terms of elliptic v(2) and triangular v(3) anisotropy coefficients measured with respect to their corresponding event planes. The v(2) values are comparable to those previously measured in d + Au collisions at the same nucleon-nucleon center-of-mass energy. Comparisons with various theoretical predictions are made, including to models where the hot spots created by the impact of the three He-3 nucleons on the Au nucleus expand hydrodynamically to generate the triangular flow. The agreement of these models with data may indicate the formation of low-viscosity quark-gluon plasma even in these small collision systems.
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10.
  • Adare, A., et al. (creator_code:aut_t)
  • Search for dark photons from neutral meson decays in p plus p and d plus Au collisions at root s(NN)=200 GeV
  • 2015
  • record:In_t: Physical Review C (Nuclear Physics). - 0556-2813. ; 91:3
  • swepub:Mat_article_t (swepub:level_refereed_t)abstract
    • The standard model (SM) of particle physics is spectacularly successful, yet the measured value of the muon anomalous magnetic moment (g - 2)mu deviates from SM calculations by 3.6 sigma. Several theoretical models attribute this to the existence of a "dark photon," an additional U(1) gauge boson, which is weakly coupled to ordinary photons. The PHENIX experiment at the Relativistic Heavy Ion Collider has searched for a dark photon, U, in pi(0), eta -> gamma e(+)e(-) decays and obtained upper limits of O(2 x 10(-6)) on U-gamma mixing at 90% C.L. for the mass range 30 < m(U) < 90 MeV/c(2). Combined with other experimental limits, the remaining region in the U-gamma mixing parameter space that can explain the (g - 2)(mu) deviation from its SM value is nearly completely excluded at the 90% confidence level, with only a small region of 29 < m(U) < 32 MeV/c(2) remaining.
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Boyle, K (110)
Campbell, S. (106)
Bathe, S. (105)
Aidala, C. (105)
Akiba, Y. (105)
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