NSR Query Results


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NSR database version of April 27, 2024.

Search: Author = W.Ke

Found 17 matches.

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2024BE03      Nucl.Phys. A1043, 122821 (2024)

R.Belmont, J.Brewer, Q.Brodsky, P.Caucal, M.Connors, M.Djordjevic, R.Ehlers, M.A.Escobedo, E.G.Ferreiro, G.Giacalone, Y.Hatta, J.Holguin, W.Ke, Zh.-B.Kang, A.Kumar, A.Mazeliauskas, Y.Mehtar-Tani, G.Nukazuka, D.Pablos, D.V.Perepelitsa, K.Rajagopal, A.M.Sickles, M.Strickland, K.Tywoniuk, I.Vitev, X.-N.Wang, Zh.Yang, F.Zhao

Predictions for the sPHENIX physics program

doi: 10.1016/j.nuclphysa.2024.122821
Citations: PlumX Metrics


2023KE05      Phys.Rev.Lett. 130, 212303 (2023)

W.Ke, Y.Yin

Does a Quark-Gluon Plasma Feature an Extended Hydrodynamic Regime?

doi: 10.1103/PhysRevLett.130.212303
Citations: PlumX Metrics


2023KE06      Phys.Rev. C 107, 064903 (2023)

W.Ke, I.Vitev

Searching for QGP droplets with high-pT hadrons and heavy flavor

doi: 10.1103/PhysRevC.107.064903
Citations: PlumX Metrics


2023WU07      Phys.Rev. C 108, 034911 (2023)

J.Wu, W.Ke, X.-N.Wang

Bayesian inference of the path-length dependence of jet energy loss

doi: 10.1103/PhysRevC.108.034911
Citations: PlumX Metrics


2023XI07      Phys.Rev. C 108, L011901 (2023)

M.Xie, W.Ke, H.Zhang, X.-N.Wang

Information-field-based global Bayesian inference of the jet transport coefficient

doi: 10.1103/PhysRevC.108.L011901
Citations: PlumX Metrics


2022ZH03      Phys.Rev.Lett. 128, 022302 (2022)

W.Zhao, W.Ke, W.Chen, T.Luo, X.-N.Wang

From Hydrodynamics to Jet Quenching, Coalescence, and Hadron Cascade: A Coupled Approach to Solving the RAA (X) υ2 Puzzle

doi: 10.1103/PhysRevLett.128.022302
Citations: PlumX Metrics


2021CH41      Phys.Rev.Lett. 127, 082301 (2021)

W.Chen, Z.Yang, Y.He, W.Ke, L.-G.Pang, X.-N.Wang

Search for the Elusive Jet-Induced Diffusion Wake in Z/γ-Jets with 2D Jet Tomography in High-Energy Heavy-Ion Collisions

doi: 10.1103/PhysRevLett.127.082301
Citations: PlumX Metrics


2021KE02      Nucl.Phys. A1005, 122039 (2021)

W.Ke, Y.Xu, S.Bass

Quantifying heavy quark transport coefficients with an improved transport model

doi: 10.1016/j.nuclphysa.2020.122039
Citations: PlumX Metrics


2021YA04      Nucl.Phys. A1005, 121854 (2021)

X.Yao, W.Ke, Y.Xu, S.A.Bass, T.Mehen, B.Muller

Quarkonium Production in Heavy Ion Collisions: From Open Quantum System to Transport Equation

doi: 10.1016/j.nuclphysa.2020.121854
Citations: PlumX Metrics


2019CA14      Phys.Rev. C 99, 054907 (2019)

S.Cao, G.Coci, S.K.Das, W.Ke, S.Y.F.Liu, S.Plumari, T.Song, Y.Xu, J.Aichelin, S.Bass, E.Bratkovskaya, X.Dong, P.B.Gossiaux, V.Greco, M.He, M.Nahrgang, R.Rapp, F.Scardina, X.-N.Wang

Toward the determination of heavy-quark transport coefficients in quark-gluon plasma

doi: 10.1103/PhysRevC.99.054907
Citations: PlumX Metrics


2019KE08      Phys.Rev. C 100, 064911 (2019)

W.Ke, Y.Xu, S.A.Bass

Modified Boltzmann approach for modeling the splitting vertices induced by the hot QCD medium in the deep Landau-Pomeranchuk-Migdal region

doi: 10.1103/PhysRevC.100.064911
Citations: PlumX Metrics


2019YA01      Nucl.Phys. A982, 755c (2019)

X.Yao, W.Ke, Y.Xu, S.Bass, B.Muller

Quarkonium production in heavy ion collisions: coupled Boltzmann transport equations

doi: 10.1016/j.nuclphysa.2018.10.005
Citations: PlumX Metrics


2018KE05      Phys.Rev. C 98, 064901 (2018)

W.Ke, Y.Xu, S.A.Bass

Linearized Boltzmann-Langevin model for heavy quark transport in hot and dense QCD matter

doi: 10.1103/PhysRevC.98.064901
Citations: PlumX Metrics


2017KE04      Phys.Rev. C 96, 044912 (2017)

W.Ke, J.S.Moreland, J.E.Bernhard, S.A.Bass

Constraints on rapidity-dependent initial conditions from charged-particle pseudorapidity densities and two-particle correlations

doi: 10.1103/PhysRevC.96.044912
Citations: PlumX Metrics


2017MO30      Nucl.Phys. A967, 361 (2017)

J.S.Moreland, J.E.Bernhard, W.Ke, S.A.Bass

Flow in small and large quark-gluon plasma droplets: the role of nucleon substructure

doi: 10.1016/j.nuclphysa.2017.05.054
Citations: PlumX Metrics


1989KE07      Chin.J.Nucl.Phys. 11, No.3, 11 (1989)

W.Ke, W.Zhao, W.Yu, X.Yuan, H.Lu

Researches on Excitation Function of In(n, X) Reactions

NUCLEAR REACTIONS 115In(n, 2n), E=12-18 MeV; measured σ(E). 115In(n, p), (n, α), 113In(n, 2n), E=14 MeV; measured σ; deduced 112m,112In production σ ratio. Activation technique.


1989LU04      Chin.J.Nucl.Phys. 11, No.2, 53 (1989)

H.Lu, W.Ke, W.Zhao, W.Yu, X.Yuan

The Study of Isomeric Cross Sections for In(n, n') Reactions at 14 MeV

NUCLEAR REACTIONS 113,115In(n, n'), 115In(n, 2n), E=13.5-14.8 MeV; measured isomer production σ(E). Activation technique.


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