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NSR database version of May 24, 2024.

Search: Author = A.Limphirat

Found 22 matches.

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2024KI09      Phys.Rev. C 109, 044913 (2024)

A.Kittiratpattana, T.Reichert, N.Buyukcizmeci, A.Botvina, A.Limphirat, Ch.Herold, J.Steinheimer, M.Bleicher

Production of nuclei and hypernuclei in pion-induced reactions near threshold energies

doi: 10.1103/PhysRevC.109.044913
Citations: PlumX Metrics

2023KI06      Phys.Rev. C 107, 044911 (2023)

A.Kittiratpattana, T.Reichert, P.Li, A.Limphirat, C.Herold, J.Steinheimer, M.Bleicher

Investigating the cluster production mechanism with isospin triggering: Thermal models versus coalescence models

doi: 10.1103/PhysRevC.107.044911
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2022HE13      Phys.Rev. C 106, 024901 (2022)

C.Herold, A.Limphirat, P.Saikham, M.Nahrgang, T.Reichert, M.Bleicher

Net-proton number cumulant ratios as a function of beam energy from an expanding nonequilibrium chiral fluid

doi: 10.1103/PhysRevC.106.024901
Citations: PlumX Metrics

2022KA37      Eur.Phys.J. A 58, 185 (2022)

A.Kaewsnod, K.Xu, Z.Zhao, X.Liu, S.Srisuphaphon, A.Limphirat, Y.Yan

Study of N(1520) and N(1535) structures via γ* p → N* transitions

doi: 10.1140/epja/s10050-022-00837-0
Citations: PlumX Metrics

2022KI20      Phys.Rev. C 106, 044905 (2022)

A.Kittiratpattana, T.Reichert, J.Steinheimer, C.Herold, A.Limphirat, Y.Yan, M.Bleicher

Correcting the BA coalescence factor at energies relevant for the GSI-HADES experiment and the RHIC Beam Energy Scan

doi: 10.1103/PhysRevC.106.044905
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2020HI13      J.Phys.(London) G47, 055101 (2020)

P.Hillmann, J.Steinheimer, T.Reichert, V.Gaebel, M.Bleicher, S.Sombun, C.Herold, A.Limphirat

First, second, third and fourth flow harmonics of deuterons and protons in Au +Au reactions at 1.23 AGeV

NUCLEAR REACTIONS 187Au(197Au, X)1,2H, E=1.23 GeV/nucleon; calculated directed flow of deuterons as a function of rapidity and for various transverse momentum regions at a fixed-target energies, directed flow of free protons, elliptic flow of free protons and deuterons. UrQMD calculations, comparison with experimental data.

doi: 10.1088/1361-6471/ab6fcf
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2020KI18      Eur.Phys.J. A 56, 274 (2020)

A.Kittiratpattana, M.F.Wondrak, M.Hamzic, M.Bleicher, C.Herold, A.Limphirat

Deuteron and antideuteron coalescence in heavy-ion collisions: energy dependence of the formation geometry

doi: 10.1140/epja/s10050-020-00269-8
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2019LI52      Eur.Phys.J. A 55, 218 (2019)

X.Y.Liu, A.Limphirat, K.Xu, D.Samart, K.Khosonthongkee, Y.Yan

Analysis of excited quark propagator effects on neutron charge form factor

doi: 10.1140/epja/i2019-12913-1
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2019SO01      Phys.Rev. C 99, 014901 (2019)

S.Sombun, K.Tomuang, A.Limphirat, P.Hillmann, C.Herold, J.Steinheimer, Y.Yan, M.Bleicher

Deuteron production from phase-space coalescence in the UrQMD approach

doi: 10.1103/PhysRevC.99.014901
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2019TO03      Phys.Rev. C 99, 034002 (2019)

K.Tomuang, P.Sittiketkorn, P.Srisawad, A.Limphirat, Y.-L.Yan, G.Chen, D.-M.Zhou, C.Kobdaj, Y.Yan

Production of K-pp and K+p-barp-bar in pp collisions at √ s = 7 TeV

doi: 10.1103/PhysRevC.99.034002
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2019XU14      Phys.Rev. C 100, 065207 (2019)

K.Xu, A.Kaewsnod, X.Y.Liu, S.Srisuphaphon, A.Limphirat, Y.Yan

Complete basis for the pentaquark wave function in a group theory approach

doi: 10.1103/PhysRevC.100.065207
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2018HE04      Eur.Phys.J. A 54, 19 (2018)

C.Herold, M.Bleicher, M.Nahrgang, J.Steinheimer, A.Limphirat, C.Kobdaj, Y.Yan

Broadening of the chiral critical region in a hydrodynamically expanding medium

doi: 10.1140/epja/i2018-12438-1
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2018LI27      Phys.Rev. C 97, 055206 (2018)

X.Y.Liu, D.Samart, K.Khosonthongkee, A.Limphirat, K.Xu, Y.Yan

Axial charges of octet and decuplet baryons in a perturbative chiral quark model

doi: 10.1103/PhysRevC.97.055206
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2018SO01      J.Phys.(London) G45, 025101 (2018)

S.Sombun, J.Steinheimer, C.Herold, A.Limphirat, Y.Yan, M.Bleicher

Higher order net-proton number cumulants dependence on the centrality definition and other spurious effects

doi: 10.1088/1361-6471/aa9c6c
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2017HE18      Nucl.Phys. A967, 828 (2017)

C.Herold, M.Nahrgang, C.Kobdaj, A.Limphirat, Y.Yan

Evolution of critical fluctuations in a heavy-ion collision scenario

doi: 10.1016/j.nuclphysa.2017.05.065
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2017KA12      Phys.Rev. C 95, 034903 (2017)

J.Kannika, C.Herold, A.Limphirat, C.Kobdaj, Y.Yan

Dynamical formation of center domains in quark-gluon plasma

doi: 10.1103/PhysRevC.95.034903
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2017SI30      Phys.Rev. C 96, 064002 (2017)

P.Sittiketkorn, K.Tomuang, P.Srisawad, A.Limphirat, C.Herold, Y.-L.Yan, G.Chen, D.-M.Zhou, C.Kobdaj, Y.Yan

Production of K-p and K+p-bar bound states in pp collisions and interpretation of the Λ(1405) resonance

NUCLEAR REACTIONS 1H(p, pK-), (p, p-barK-), E=0.9 TeV; calculated yields of charged particles; analyzed production of K-p and K+(anti-proton) bound states with the PACIAE+DCPC model, and comparison with the yields from ALICE experimental data; deduced evidence for the production of Λ(1405) resonance.

doi: 10.1103/PhysRevC.96.064002
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2016SR01      Phys.Rev. C 93, 025201 (2016)

S.Srisuphaphon, A.Kaewsnod, A.Limphirat, K.Khosonthongkee, Y.Yan

Role of pentaquark components in φ meson production proton-antiproton annihilation reactions

doi: 10.1103/PhysRevC.93.025201
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2014PO10      Few-Body Systems 55, 1041 (2014)

W.Poonsawat, A.Limphirat, D.-M.Zhou, Y.-L.Yan, P.Srisawad, C.Kobdaj, Yu.Yan, B.-H.Sa

Net-Proton Nonstatistical Moments in High-Energy pp Collisions in PACIAE Model

doi: 10.1007/s00601-014-0807-5
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2014YA25      Nucl.Phys. A930, 187 (2014)

Y.-L.Yan, D.-M.Zhou, A.Limphirat, B.-G.Dong, Y.-P.Yan, B.-H.Sa

Simultaneously study for particle transverse sphericity and ellipticity in pp collisions at LHC energies

doi: 10.1016/j.nuclphysa.2014.07.025
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2012ZH25      Phys.Rev. C 85, 064916 (2012)

D.-M.Zhou, A.Limphirat, Y.-l.Yan, C.Yun, Y.-p.Yan, X.Cai, L.P.Csernai, B.-H.Sa

Higher-moment singularities explored by net-proton nonstatistical fluctuations

doi: 10.1103/PhysRevC.85.064916
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2010LI43      Phys.Rev. C 82, 055201 (2010)

A.Limphirat, C.Kobdaj, P.Suebka, Y.Yan

Decay widths of ground-state and excited Ξb baryons in a nonrelativistic quark model

doi: 10.1103/PhysRevC.82.055201
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