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PHENIX
Collaboration
(2022).
Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV . Phys.Rev.C 105 (2022) 024901.
https://doi.org/10.1103/PhysRevC.105.024901
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PHENIX
Collaboration
(2022).
Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV . HEPData (collection).
https://doi.org/10.17182/hepdata.132366
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PHENIX
Collaboration
(2022).
Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV (Version 1). HEPData (collection).
https://doi.org/10.17182/hepdata.132366.v1
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Figure 7b
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Figure 8a
Figure 8b
Figure 8c
Figure 8d
Figure 8e
Figure 8f
Figure 13a (supplemental material)
Figure 13b (supplemental material)
Figure 13c (supplemental material)
Figure 13d (supplemental material)
Figure 14a (supplemental material)
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Figure 14c (supplemental material)
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Figure 15a (supplemental material)
Figure 15b (supplemental material)
Figure 15c (supplemental material)
Figure 15d (supplemental material)
Figure 16a (supplemental material)
Figure 16b (supplemental material)
Figure 16c (supplemental material)
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Figure 17a (supplemental material)
Figure 17b (supplemental material)
Figure 17c (supplemental material)
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Figure 18a (supplemental material)
Figure 18b (supplemental material)
Figure 18c (supplemental material)
Figure 18d (supplemental material)
Table 5 (supplemental material)
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Table 7 (supplemental material)
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Table 12 (supplemental material)
Table 13 (supplemental material)
Table 14 (supplemental material)
Table 15 (supplemental material)
Table 16 (supplemental material)
Table 17 (supplemental material)
Table 18 (supplemental material)
Table 19 (supplemental material)
Table 20 (supplemental material)
PHENIX
Collaboration
(2022).
“Figure 3a” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t1
PHENIX
Collaboration
(2022).
“Figure 3b” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t2
PHENIX
Collaboration
(2022).
“Figure 3c” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t3
PHENIX
Collaboration
(2022).
“Figure 4a” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t4
PHENIX
Collaboration
(2022).
“Figure 4b” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t5
PHENIX
Collaboration
(2022).
“Figure 4c” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t6
PHENIX
Collaboration
(2022).
“Figure 5a” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t7
PHENIX
Collaboration
(2022).
“Figure 5b” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t8
PHENIX
Collaboration
(2022).
“Figure 5c” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t9
PHENIX
Collaboration
(2022).
“Figure 6” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t10
PHENIX
Collaboration
(2022).
“Figure 7a” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t11
PHENIX
Collaboration
(2022).
“Figure 7b” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t12
PHENIX
Collaboration
(2022).
“Figure 7c” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t13
PHENIX
Collaboration
(2022).
“Figure 8a” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t14
PHENIX
Collaboration
(2022).
“Figure 8b” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t15
PHENIX
Collaboration
(2022).
“Figure 8c” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t16
PHENIX
Collaboration
(2022).
“Figure 8d” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t17
PHENIX
Collaboration
(2022).
“Figure 8e” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t18
PHENIX
Collaboration
(2022).
“Figure 8f” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t19
PHENIX
Collaboration
(2022).
“Figure 13a (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t20
PHENIX
Collaboration
(2022).
“Figure 13b (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t21
PHENIX
Collaboration
(2022).
“Figure 13c (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t22
PHENIX
Collaboration
(2022).
“Figure 13d (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t23
PHENIX
Collaboration
(2022).
“Figure 14a (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t24
PHENIX
Collaboration
(2022).
“Figure 14b (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t25
PHENIX
Collaboration
(2022).
“Figure 14c (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t26
PHENIX
Collaboration
(2022).
“Figure 14d (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t27
PHENIX
Collaboration
(2022).
“Figure 15a (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t28
PHENIX
Collaboration
(2022).
“Figure 15b (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t29
PHENIX
Collaboration
(2022).
“Figure 15c (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t30
PHENIX
Collaboration
(2022).
“Figure 15d (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t31
PHENIX
Collaboration
(2022).
“Figure 16a (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t32
PHENIX
Collaboration
(2022).
“Figure 16b (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t33
PHENIX
Collaboration
(2022).
“Figure 16c (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t34
PHENIX
Collaboration
(2022).
“Figure 16d (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t35
PHENIX
Collaboration
(2022).
“Figure 17a (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t36
PHENIX
Collaboration
(2022).
“Figure 17b (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t37
PHENIX
Collaboration
(2022).
“Figure 17c (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t38
PHENIX
Collaboration
(2022).
“Figure 17d (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t39
PHENIX
Collaboration
(2022).
“Figure 18a (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t40
PHENIX
Collaboration
(2022).
“Figure 18b (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t41
PHENIX
Collaboration
(2022).
“Figure 18c (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t42
PHENIX
Collaboration
(2022).
“Figure 18d (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t43
PHENIX
Collaboration
(2022).
“Table 5 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t44
PHENIX
Collaboration
(2022).
“Table 6 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t45
PHENIX
Collaboration
(2022).
“Table 7 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t46
PHENIX
Collaboration
(2022).
“Table 8 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t47
PHENIX
Collaboration
(2022).
“Table 9 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t48
PHENIX
Collaboration
(2022).
“Table 10 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t49
PHENIX
Collaboration
(2022).
“Table 11 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t50
PHENIX
Collaboration
(2022).
“Table 12 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t51
PHENIX
Collaboration
(2022).
“Table 13 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t52
PHENIX
Collaboration
(2022).
“Table 14 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t53
PHENIX
Collaboration
(2022).
“Table 15 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t54
PHENIX
Collaboration
(2022).
“Table 16 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t55
PHENIX
Collaboration
(2022).
“Table 17 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t56
PHENIX
Collaboration
(2022).
“Table 18 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t57
PHENIX
Collaboration
(2022).
“Table 19 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t58
PHENIX
Collaboration
(2022).
“Table 20 (supplemental material)” of “Kinematic dependence of azimuthal anisotropies in $p$ $+$ Au, $d$ $+$ Au, $^3$He $+$ Au at $\sqrt{s_{_{NN}}}$ = 200 GeV ” (Version 1). HEPData (dataset).
https://doi.org/10.17182/hepdata.132366.v1/t59