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NSR database version of April 11, 2024.

Search: Author = H.L.Li

Found 11 matches.

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2021DU14      Int.J.Mod.Phys. E30, 2150046 (2021)

H.-R.Duan, J.-Y.Wu, T.-L.Ma, J.-S.Li, H.-L.Li, M.-M.Xu, R.-X.Yang, D.-H.Zhang, Z.Zhang, Q.Wang, S.Kodaira

Fragmentation of carbon on elemental targets at 290 A MeV

NUCLEAR REACTIONS C, 27Al, Cu, Pb(12C, X), E=290 MeV/nucleon; measured reaction products; deduced total charge-changing σ and the partial σ for projectile fragments production. Comparison with Bradt-Peters semi-empirical formula, PHITS and NUCFRG2 simulation models.

doi: 10.1142/S0218301321500464
Citations: PlumX Metrics


2021MA71      Int.J.Mod.Phys. E30, 2150076 (2021)

T.-L.Ma, J.-S.Li, H.-L.Li, M.-M.Xu, R.-X.Yang, Z.Zhang, Q.Wang, S.Kodaira, D.-H.Zhang

Measurement of cross-sections for charge pickup by 12C on elemental targets at 290 MeV/n

NUCLEAR REACTIONS C, 27AL, Cu, Pb(12C, X), E=290 MeV/nucleon; measured reaction products; deduced charge pickup σ. Comparison with available data.

doi: 10.1142/S0218301321500762
Citations: PlumX Metrics


2019HU16      Chin.J.Phys.(Taiwan) 60, 88 (2019)

L.-D.Huo, L.-H.Wang, J.-H.Zhu, H.-L.Li, J.-S.Li, S.Kodaira, N.Yasuda, D.-H.Zhang

The total charge-changing cross sections and the partial cross sections of 56Fe fragmentation on Al, C and CH2 targets

NUCLEAR REACTIONS C, 27Al(56Fe, X), E=496 MeV/nucleon; measured reaction products; deduced total charge-changing σ and the partial σ.

doi: 10.1016/j.cjph.2019.04.022
Citations: PlumX Metrics


2018XU07      Chin.Phys.C 42, 084103 (2018)

H.-J.Xu, J.Zhao, X.-B.Wang, H.-L.Li, Z.-W.Lin, C.-W.Shen, F.-Q.Wang

Varying the chiral magnetic effect relative to flow in a single nucleus-nucleus collision

NUCLEAR REACTIONS 197Au(197Au, X), Cu(Cu, X), Ru(Ru, X), Zr(Zr, X), Pb(Pb, X), E∼200 GeV/nucleon; calculated elliptic flow with with MC Glauber and Multi-Phase Transport (ampt) model simulations.

doi: 10.1088/1674-1137/42/8/084103
Citations: PlumX Metrics


2015ZH02      Chin.Phys.C 39, 014001 (2015)

D.-H.Zhang, Y.-L.Chen, G.-R.Wang, W.-D.Li, Q.Wang, J.-J.Yao, J.-G.Zhou, r.Li, J.-S.Li, H.-L.Li

Forward-backward multiplicity correlations of target fragments in nucleus-emulsion collisions at a few hundred MeV/u

NUCLEAR REACTIONS H, C, N, O, S, I, B, Ag(α, X), E=150 MeV/nucleon; H, C, N, O, S, I, B, Ag(12C, X), E=290, 400 MeV/nucleon; H, C, N, O, S, I, B, Ag(20Ne, X), E=400 MeV/nucleon; H, C, N, O, S, I, B, Ag(56Fe, X), E=500 MeV/nucleon; measured reaction products, Ep, Ip; deduced fragment proton multiplicity distributions, correlations between the averaged multiplicity of backward and forward. Geometrical picture and the cascade evaporation model of high energy nucleus-nucleus collisions.

doi: 10.1088/1674-1137/39/1/014001
Citations: PlumX Metrics


2011WA09      Nucl.Phys. A855, 469c (2011)

X.-N.Wang, H.-L.Li, F.-M.Liu, G.-L.Ma, Y.Zhu

Dihadron and γ-hadron correlations from jet-induced medium excitation in high-energy heavy-ion collisions

doi: 10.1016/j.nuclphysa.2011.02.108
Citations: PlumX Metrics


2009LI03      Chin.Phys.Lett. 26, 012401 (2009)

J.-S.Li, D.-H.Zhang, H.-L.Li, F.-H.Liu

Self-affine Multiplicity Fluctuation of Slow Particles in 16O-AgBr Collisions at 3.7AGeV

doi: 10.1088/0256-307X/26/1/012401
Citations: PlumX Metrics


2009LI06      Chin.J.Phys.(Taiwan) 47, 27 (2009)

H.-L.Li, D.-H.Zhang

Evidence of a Non-Thermal Phase Transition in the Emission of Shower Particles in 84Kr-emulsion Interactions at 1.7 A GeV


2009ZH05      Chinese Physics B 18, 522 (2009)

D.-H.Zhang, H.-L.Li

Evidence of self-affine multiplicity fluctuation of particle production in 84Kr-emulsion interactions at 1.7 A GeV

doi: 10.1088/1674-1056/18/2/023
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2008LI06      Acta Phys.Pol. B39, 641 (2008)

H.-L.Li

Two-Source Emission of Protons in Em(8B, p7Be)Em Reactions at 1.2A GeV


2005ZH37      Chinese Physics 14, 2451 (2005)

D.-H.Zhang, Z.-Yu.Li, H.-L.Li, J.-S.Li

Fragmentation in 16O-emulsion interactions at 3.7 A GeV

NUCLEAR REACTIONS H, C, N, O, Ag, Br(16O, X), E=3.7 GeV/nucleon; measured fragments multiplicity and charge distributions; deduced reaction mechanism features.

doi: 10.1088/1009-1963/14/12/014
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