Transverse-energy distributions at midrapidity in $p$$+$$p$, $d$$+$Au, and Au$+$Au collisions at $\sqrt{s_{_{NN}}}=62.4$--200~GeV and implications for particle-production models

The PHENIX collaboration Adler, S.S. ; Afanasiev, S. ; Aidala, C. ; et al.
Phys.Rev.C 89 (2014) 044905, 2014.
Inspire Record 1273625 DOI 10.17182/hepdata.63512

Measurements of the midrapidity transverse energy distribution, $d\Et/d\eta$, are presented for $p$$+$$p$, $d$$+$Au, and Au$+$Au collisions at $\sqrt{s_{_{NN}}}=200$ GeV and additionally for Au$+$Au collisions at $\sqrt{s_{_{NN}}}=62.4$ and 130 GeV. The $d\Et/d\eta$ distributions are first compared with the number of nucleon participants $N_{\rm part}$, number of binary collisions $N_{\rm coll}$, and number of constituent-quark participants $N_{qp}$ calculated from a Glauber model based on the nuclear geometry. For Au$+$Au, $\mean{d\Et/d\eta}/N_{\rm part}$ increases with $N_{\rm part}$, while $\mean{d\Et/d\eta}/N_{qp}$ is approximately constant for all three energies. This indicates that the two component ansatz, $dE_{T}/d\eta \propto (1-x) N_{\rm part}/2 + x N_{\rm coll}$, which has been used to represent $E_T$ distributions, is simply a proxy for $N_{qp}$, and that the $N_{\rm coll}$ term does not represent a hard-scattering component in $E_T$ distributions. The $dE_{T}/d\eta$ distributions of Au$+$Au and $d$$+$Au are then calculated from the measured $p$$+$$p$ $E_T$ distribution using two models that both reproduce the Au$+$Au data. However, while the number-of-constituent-quark-participant model agrees well with the $d$$+$Au data, the additive-quark model does not.

43 data tables

Et EMC distributions for sqrt(sNN) = 62.4 GeV Au+Au collisions shown in 5% wide centrality bins.

Et EMC distributions for sqrt(sNN) = 62.4 GeV Au+Au collisions shown in 5% wide centrality bins.

Et EMC distributions for sqrt(sNN) = 62.4 GeV Au+Au collisions shown in 5% wide centrality bins.

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Exclusive Measurements of Virtual Bremsstrahlung in Proton-Proton Scattering at 190 MeV

Messchendorp, J.G. ; Bacelar, J.C.S. ; van Goethem, M.J. ; et al.
Phys.Rev.Lett. 82 (1999) 2649-2652, 1999.
Inspire Record 945155 DOI 10.17182/hepdata.19545

Exclusive differential cross sections of virtual bremsstrahlung in proton-proton scattering below the pion-production threshold have been measured for the first time. The total cross section integrated over photon invariant masses of 15 to 80MeV/c2 and integrated over the acceptance of the detector is 3.2±0.1±0.5pb. The data are compared to a low-energy calculation and a fully relativistic microscopic model, which predict a virtual bremsstrahlung cross section of 3.4 and 5.9 pb, respectively. Over the entire experimentally covered phase space, the low-energy calculation gives a better description of the data than the microscopic model.

1 data table

No description provided.


C-12 (gamma , p) B-11 cross-section from 44 to 98 MeV

Mori, K. ; Harty, P.D. ; Fujii, Y. ; et al.
Phys.Rev.C 51 (1995) 2611-2615, 1995.
Inspire Record 411138 DOI 10.17182/hepdata.25938

The C12(γ,p0+1)11B differential cross section has been measured for tagged-photon energies of Eγ=44–98 MeV, at laboratory angles of 30°, 45°, 65°, and 90°. Comparison has been made with four different types of calculation. Results from similar calculations for the photoneutron channel have been compared to previously published C12(γ,n0+1)11C data.

1 data table

No description provided.


Global transverse energy distributions in Si + Al, Au at 14.6-A/GeV/c and Au + Au at 11.6-A.GeV/c

The E-802 collaboration Ahle, L. ; Akiba, Y. ; Beavis, D. ; et al.
Phys.Lett.B 332 (1994) 258-264, 1994.
Inspire Record 374156 DOI 10.17182/hepdata.28663

Measurements of the global transverse energy distributions dσ / dE T and dE T / dη using the new AGS beam of 197 Au at 11.6 A GeV/ c on a Au target, as well as a beam of 28 Si at 14.6 A GeV/ c on Al and Au targets, are presented for a leadglass detector with acceptance 1.3 ≤ η ≤ 2.4 and 0 ≤ φ < 2 π . The dσ / dE T spectra are observed to have different shapes for the different systems and simple energy rescaling does not account for the projectile dependence. The Au+Au dσ / dE T spectrum is satisfactorily constructed from the upper edge of Si+Au by the geometric Wounded Projectile Nucleon Model after applying a correction for the beam energy.

6 data tables

Incident energy is 14.6 GeV/nucleon.

Incident energy is 14.6 GeV/nucleon.

Incident energy is 11.6 GeV/nucleon.

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Differential Cross-section of the $\pi^- P \to \eta$ Delta0 (1232) Reaction at Momenta of 3.3-{GeV}/c and 4.75-{GeV}/c. (In Russian)

Arkhipov, V.V. ; Aslanian, P.Zh. ; Astvatsaturov, R.G. ; et al.
Sov.J.Nucl.Phys. 47 (1988) 1044-1046, 1988.
Inspire Record 252351 DOI 10.17182/hepdata.17353

None

1 data table

No description provided.


ELASTIC PHOTOPRODUCTION OF NEUTRAL PIONS ON HELIUM NUCLEUS NEAR THE RESONANCE DELTA (1232). (IN RUSSIAN)

Ananin, P.S. ; Glavanakov, I.V. ; Gushtan, M.N. ;
Yad.Fiz. 41 (1985) 1393-1400, 1985.
Inspire Record 227489 DOI 10.17182/hepdata.17662

None

8 data tables

No description provided.

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No description provided.

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DIFFERENTIAL CROSS-SECTION OF THE REACTION pi- p ---> eta0 DELTA0 (1232) FOR A MOMENTUM OF 3.3-GeV/c

Arkhipov, V.V. ; Aslanian, P.Zh. ; Astvatsaturov, R.G. ; et al.
Sov.J.Nucl.Phys. 43 (1986) 569, 1986.
Inspire Record 216519 DOI 10.17182/hepdata.38303

None

4 data tables

Preliminary data from preprint.

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DIFFERENTIAL CROSS-SECTION OF eta PRODUCTION ON CARBON IN pi- BEAM AT 3.3-GeV/c

Arkhipov, V.V. ; Astvatsaturov, R.G. ; Knapik, E. ; et al.
Sov.J.Nucl.Phys. 38 (1983) 593, 1983.
Inspire Record 183551 DOI 10.17182/hepdata.39136

None

1 data table

The recoil proton polarization in the reaction gamma p ---> pi0 p in the third resonance region

Prentice, M.N. ; Railton, R. ; Rutherglen, J.G. ; et al.
Nucl.Phys.B 41 (1972) 353-364, 1972.
Inspire Record 75162 DOI 10.17182/hepdata.32916

Measurements have been made of the polarization of the recoil proton in the process γ p → π o p for photon energies of 850 - 1250 MeV and centre-of-mass angles of 80° - 125°. The results, which are to a typical accuracy of ±0.09, show a marked disagreement with previous phenomenological analyses above 1000 MeV.

5 data tables

No description provided.

No description provided.

No description provided.

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