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NSR database version of April 11, 2024.

Search: Author = Q.Luo

Found 29 matches.

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2021ZH44      Chin.Phys.C 48, 084001 (2021)

J.Zhong, L.-T.Deng, S.-P.Hu, X.-G.Wu, P.C.Srivastava, A.Saxena, G.-S.Li, Y.Zheng, C.-B.Li, Q.-M.Chen, C.-Y.He, W.-K.Zhou, B.-J.Zhu, Q.-W.Fang, H.Hua, J.-J.Sun, H.-B.Sun, L.Gan, H.-G.Zhao, Q.Luo, Z.-X.Wu

High spin states in 71Ga

NUCLEAR REACTIONS 70Zn(7Li, 2nα)71Ga, E=30, 35 MeV; measured reaction products, Eγ, Iγ; deduced γ-ray energies and intensities, J, π, level scheme, positive and negative parity bands. Comparison with calculations in the framework of nuclear shell models with JUN45 and jj44b interactions.

doi: 10.1088/1674-1137/ac0098
Citations: PlumX Metrics

2021ZH66      Nucl. Sci. Tech. 32, 107 (2021)

J.Zhong, X.-G.Wu, S.-P.Hu, Y.-J.Ma, Y.Zheng, C.-B.Li, G.-S.Li, B.-J.Zhu, T.-X.Li, Y.-J.Jin, Y.-X.Gao, Q.-W.Fan, K.-Y.Ma, D.Yang, H.-B.Sun, H.-G.Zhao, L.Gan, Q.Luo, Z.X.Wu

Lifetime measurements in 138Nd

NUCLEAR REACTIONS 123Sb(19F, 4n), E=87 MeV; measured reaction products, Eγ, Iγ; deduced γ-ray energies and relative intensities, J, π, partial level scheme, level T1/2, B(E2). Comparison with Grodzins systematics and available data. The recoil distance Doppler shift technique in combination with the differential decay curve method. The HI-13 tandem accelerator of the China Institute of Atomic Energy (CIAE) in Beijing.

doi: 10.1007/s41365-021-00953-4
Citations: PlumX Metrics

Data from this article have been entered in the XUNDL database. For more information, click here.

2020ZH26      Chin.Phys.C 44, 094001 (2020)

J.Zhong, Y.-J.Ma, X.-G.Wu, B.-J.Zhu, C.-B.Li, G.-S.Li, Y.Zheng, Q.-M.Chen, C.-Y.He, L.-T.Deng, W.-K.Zhou, K.-Y.Ma, D.Yang, H.Guo, J.-Q.Wang, X.Guang, J.Sun, H.-B.Sun, S.-P.Hu, L.Gan, H.-G.Zhao, Q.Luo, Z.-X.Wu

Lifetime measurement for the 21+ state in 106Cd

NUCLEAR REACTIONS 94Zr(16O, 4n)106Cd, E=87 MeV; measured reaction products, Eγ, Iγ; deduced γ-ray energies, J, π, lifetime, B(E2). The Recoil Distance Doppler Shift technique in combination with the Differential Decay Curve Method.

doi: 10.1088/1674-1137/44/9/094001
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Data from this article have been entered in the XUNDL database. For more information, click here.

2016LI51      Chin.Phys.C 40, 114104 (2016)

E.T.Li, B.Guo, Z.H.Li, Y.B.Wang, Y.J.Li, Z.D.Wu, J.Su, D.Y.Pang, X.X.Bai, X.C.Du, Q.W.Fan, L.Gan, Z.Y.Han, X.Hao, S.P.Hu, J.J.He, L.Jing, S.J.Jin, L.Li, X.Y.Li, Z.C.Li, G.Lian, J.C.Liu, Q.Luo, L.H.Qiao, Y.P.Shen, H.B.Sun, S.Q.Yan, X.Q.Yu, S.Zeng, D.H.Zhang, L.Y.Zhang, W.J.Zhang, Y.Zhou, W.P.Liu

Radii of the bound states in 16N from the asymptotic normalization coefficients

RADIOACTIVITY 16N(n) [from 15N(7Li, 6Li)16N, E=44 MeV]; analyzed available data; deduced asymptotic normalization coefficients (ANCs), rms radii of the valence neutron, probabilities of the valence neutron staying out of the core potentials.

doi: 10.1088/1674-1137/40/11/114104
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Data from this article have been entered in the XUNDL database. For more information, click here.

2005YU04      Chin.Phys.Lett. 22, 1628 (2005)

D.-Q.Yuan, Y.-N.Zheng, D.-M.Zhou, Y.Zuo, E.-P.Du, X.Duan, C.-H.Wang, Q.Luo, X.-G.Wu, G.-S.Li, S.-X.Wen, G.-J.Xu, Z.-C.Gao, Y.-S.Chen, S.-Y.Zhu

Measurements of g-Factor of Rotational Levels in 83Y

NUCLEAR REACTIONS 58Ni(28Si, 3p), E=98 MeV; measured Eγ, Iγ(θ, H, t), γγ-coin. 83Y deduced g-factors for rotational band levels. Transient field technique, comparison with cranking model predictions.

doi: 10.1088/0256-307X/22/7/019
Citations: PlumX Metrics

2001ZH44      Hyperfine Interactions 136/137, 205 (2001)

S.Y.Zhu, Q.Luo, Y.G.Wang, Z.G.Fan, Y.J.Xu, R.Wang, J.Z.Zhu, G.S.Li, X.A.Liu, X.G.Wu, S.X.Wen, G.J.Xu, Z.C.Gao, X.Z.Zhang, Y.S.Chen, K.Matsuta, M.Fukuda, M.Mihara, T.Minamisono

g-Factor Measurements of Rotational States in 84, 86Zr

NUCLEAR REACTIONS 58Ni(28Si, 2p), E=98 MeV; 58Ni(32S, 4p), E=110 MeV; measured Eγ, Iγ(θ, H, t). 84,86Zr deduced g factors for rotational band states. Transient-field technique.

doi: 10.1023/A:1020532332334
Citations: PlumX Metrics

2000ZH28      Chin.Phys.Lett. 17, 560 (2000)

S.-Y.Zhu, Q.Luo, G.-S.Li, Z.-G.Fan, Y.-J.Xu, Z.-C.Gao, S.-X.Wen, X.-G.Wu, X.-A.Liu, G.-J.Xu, J.-Z.Zhu, Y.-S.Chen, K.Matsuta, M.Fukuda, M.Mihara, T.Minamisono

Rotational State g-Factors in 84Zr

NUCLEAR REACTIONS 58Ni(28Si, 2p), E=98 MeV; measured Eγ, Iγ(θ, H, t) in polarized Fe. 84Zr deduced rotational band levels g-factors, configurations. Transient field technique.

1998HE03      Eur.Phys.J. A 1, 61 (1998)

Z.Y.He, G.M.Jin, Z.Y.Li, L.M.Duan, G.X.Dai, B.G.Zhang, H.Y.Wu, W.X.Wen, Y.J.Qi, Q.Z.Luo, S.F.Wang

Emission Order of Light Particles and Light Fragments from Hot Nuclei followed by Binary Fission

NUCLEAR REACTIONS 197Au(40Ar, F), E=25 MeV/nucleon; measured light charged particles, fission fragments correlation; deduced light particles relative emission order.

doi: 10.1007/s100500050032
Citations: PlumX Metrics

1998HE08      Phys.Rev. C57, 1824 (1998)

Z.Y.He, G.M.Jin, Z.Y.Li, L.M.Duan, G.X.Dai, B.G.Zhang, H.Y.Wu, W.X.Wen, Y.J.Qi, Q.Z.Luo

Emission Time Scales for Light Charged Particles from Symmetric and Asymmetric Fission Processes for 40Ar + 197Au Reactions at 25 MeV/nucleon

NUCLEAR REACTIONS 197Au(40Ar, X), E=25 MeV/nucleon; measured fission-associated light charged particle spectra, coincidences; deduced two-particle correlation functions, emission time scale.

doi: 10.1103/PhysRevC.57.1824
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1998WU03      Phys.Rev. C57, 3178 (1998)

H.-Y.Wu, G.-X.Dai, G.-M.Jin, Z.-Y.Li, L.-M.Duan, Z.-Y.He, W.-X.Wen, B.-G.Zhang, Y.-J.Qi, Q.-Z.Luo, Z.-K.Li

Evolution of the Decay of Highly Excited Nuclei

NUCLEAR REACTIONS 115In, 159Tb, 197Au, 209Bi(40Ar, X), E=25 MeV/nucleon; measured ternary fragment events angular correlations vs time; deduced reaction mechanism features.

doi: 10.1103/PhysRevC.57.3178
Citations: PlumX Metrics

1997HE08      Nucl.Phys. A620, 214 (1997)

Z.Y.He, L.M.Duan, G.M.Jin, Z.Y.Li, H.Y.Wu, B.G.Zhang, W.X.Wen, Y.J.Qi, Q.Z.Luo, G.X.Dai

The Correlation Functions and Emission Time Scales for Light Particles and Light Fragments in 40Ar + 197Au Reactions at 25 MeV/nucleon

NUCLEAR REACTIONS 197Au(40Ar, X), E=25 MeV/nucleon; measured light charged particles, intermediate mass fragments correlation functions; deduced mean emission time, temperature.

doi: 10.1016/S0375-9474(97)00161-9
Citations: PlumX Metrics

1997LI36      Z.Phys. A359, 247 (1997)

Z.-Y.Li, Z.-Y.He, L.-M.Duan, G.-M.Jin, H.-Y.Wu, B.-G.Zhang, W.-X.Wen, Y.-J.Qi, Q.-Z.Luo, G.-X.Dai, H.-W.Wang

Impact Parameter Selected Nuclear Temperatures of Hot Nuclei from Excited State Populations for 40Ar + 197Au Reactions at E/A = 25 MeV

NUCLEAR REACTIONS 197Au(40Ar, X), E=25 MeV/nucleon; measured αα(fission fragment)-coin; deduced 8Be yield ratios vs temperature, reaction mechanism features.

doi: 10.1007/s002180050398
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1997WU02      Nucl.Phys. A617, 385 (1997)

H.Wu, G.Jin, Z.Li, G.Dai, Y.Qi, Z.He, Q.Luo, L.Duan, W.Wen, B.Zhang

Temperature and Excitation Energy of Hot Nuclei in the Reaction of 40Ar + 197Au at 25 MeV/nucleon

NUCLEAR REACTIONS 197Au(40Ar, F), E=25 MeV/nucleon; measured fission (fragment)(fragment)-coin; deduced nuclear temperature, excitation energy relationship. Different statistical models.

doi: 10.1016/S0375-9474(97)00038-9
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1996HE15      Chin.Phys.Lett. 13, 168 (1996)

Z.-Y.He, G.-M.Jin, Z.-Y.Li, L.-M.Duan, G.-X.Dai, B.-G.Zhang, H.-Y.Wu, W.-X.Wen, Q.-Z.Luo, Y.-J.Qi

Evolution from Sequential Decay to Simultaneous Multifragmentation with Increasing Beam Energy

NUCLEAR REACTIONS 197Au(40Ar, X), E=25 MeV/nucleon; measured (fragment)(fragment)-correlation functions; deduced light fragments mean emission time, sequential decay evidence. Comparison with other data, three-body trajectory calculation.

doi: 10.1088/0256-307X/13/3/003
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1996LI47      Radiochim.Acta 72, 109 (1996)

W.Li, T.Sun, D.Wu, R.Sun, L.Zhao, X.Yin, X.Zhang, Q.Luo, F.Zhang, G.Jin

Target Residues from the Interaction of Copper with 20-46 MeV/Nucleon 12C Ions

NUCLEAR REACTIONS, ICPND Cu(12C, X)24Na/28Mg/34Cl/34mCl/39Cl/41Ar/42K/43K/44Sc/44mSc/47Sc/48Sc/48V/48Cr/49Cr/51Cr/52Mn/52mMn/52Fe/54Mn/55Co/56Mn/56Co/57Ni/58Co/59Fe/60Co/60Cu/61Cu/62Zn/63Zn/65Zn/66Ga/67Ga/69Ga/71As, E=20-46 MeV/nucleon; measured residuals production σ vs E, cumulative or independent yields, charge distribution. Thick target, thick catcher foil technique. Fireball model, statistical binary decay.

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0449.

1996LI58      Nucl.Instrum.Methods Phys.Res. A373, 198 (1996)

Z.Li, G.Jin, Z.He, L.Duan, H.Wu, Y.Qi, Q.Luo, B.Zhang, W.Wen, G.Dai

A BGO Detector Array and Its Application in Intermediate Energy Heavy Ion Experiments

NUCLEAR REACTIONS 197Au(40Ar, X), E=25 MeV/nucleon; measured αα-, dα, dd-correlation function, (fragment)(fragment)-, (dd)-coin. BGO crystal as the E-detector of ΔE-E array.

doi: 10.1016/0168-9002(96)00007-1
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1996NO07      Nucl.Phys. A607, 105 (1996)

E.Norbeck, Q.Z.Luo, Y.W.Cheng, P.Pogodin, F.D.Ingram

Nuclear Rings and Gas-Liquid Phase Transitions

NUCLEAR REACTIONS 197Au(197Au, X), E=100, 250 MeV/nucleon; 208Pb(208Pb, X), E=35-60 MeV/nucleon; 93Nb(93Nb, X), E=60 MeV/nucleon; 197Au(12C, X), E=0.4-4 GeV/nucleon; calculated intermediate mass fragment production related features, central collisions; deduced nuclear rings, gas-liquid phase transitions related features. BUU microscopic simulation.

doi: 10.1016/S0375-9474(96)00226-6
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1995DA07      Nucl.Phys. A583, 173c (1995)

G.X.Dai, H.Y.Wu, Z.Y.He, Q.Z.Luo, L.M.Duan, B.G.Zhang, Y.J.Qi, Z.Y.Li, G.M.Jin, W.X.Wen

The 4-Fold Fission in 40Ar + 209Bi, 197Au and 159Tb Reactions at 25 MeV/u

NUCLEAR REACTIONS 197Au, 159Tb, 209Bi(40Ar, F), (40Ar, X), E=25 MeV/nucleon; measured fission, breakup fragment mass, velocity, total kinetic energy.

doi: 10.1016/0375-9474(94)00656-8
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1995DA33      Chin.J.Nucl.Phys. 17, No 3, 228 (1995)

G.X.Dai, J.B.Natowitz, R.Wada, K.Hagel, Q.Z.Luo, Z.Y.He, J.Blackadar, S.Lee, J.T.Li, Y.N.Lou, D.Utley, B.Xiao

Projectile Fragmentation in 20Ne + 165Ho Reaction at 45 MeV/u

NUCLEAR REACTIONS 165Ho(20Ne, X), E at 45 MeV/nucleon; measured fragment velocity energy, spectra for 3,4He, 6Li, 7,9Be, 10B, 12C, 14N, 16O; measured Fermi momentum reduced width. Projectile fragmentation.

1995HE33      Chin.Phys.Lett. 12, 521 (1995)

Z.He, L.Duan, Z.Li, G.Jin, Q.Luo, H.Wu, B.Zhang, W.Wen, Y.Qi, B.Dang, G.Dai

Triton-Triton Correlation and Emission Times in Intermediate Energy Nucleus-Nucleus Collisions

NUCLEAR REACTIONS 197Au(40Ar, X), E=25 MeV/nucleon; measured tt-correlations; deduced average emission times. Three-body trajectory calculations.

1995ZH53      Chin.J.Nucl.Phys. 17, No 3, 247 (1995)

X.Zhang, W.-X.Li, X.M.Yin, W.-X.Wen, T.-Y.Sun, G.-M.Jin, Q.-Z.Luo

Mass Yield Distribution in Intermediate Energy Heavy Ion Reactions

NUCLEAR REACTIONS Cu(40Ar, X), E=40 MeV/nucleon; measured fragment mass yield distribution. Off-line γ-spectroscopy. Statistical binary decay model.

1994LI66      Chin.J.Nucl.Phys. 16, No 4, 328 (1994)

Z.-Y.Li, Q.-Z.Luo, G.-M.Jin, H.-Y.Wu, Z.-Y.He, L.-M.Duan, B.-G.Zhang, Y.-J.Qi, W.-X.Wen, B.-R.Dang, D.-H.Yan, G.-X.Dai

Particle-Particle Correlations for 40Ar Induced Reactions on 197Au at 25 MeV/A

NUCLEAR REACTIONS 197Au(40Ar, X), E=25 MeV/nucleon; measured pp-, pt-, αα-correlations; deduced 8Be, 8Be(*) yields. 8Be deduced average α-emitting temperature. Statistical model.

1994LU02      Chin.Phys.Lett. 11, 65 (1994)

Q.Luo, G.Dai

Mass-Asymmetric Breakup in the Extended Finite-Range Macroscopic Model

NUCLEAR REACTIONS, ICPND 181Ta(12C, F), E=46.7 MeV/nucleon; calculated fission fragment yield vs mass. Extended finite-range macroscopic model.

NUCLEAR STRUCTURE 110,112In, 159Tb, 209Bi, 75Br; calculated fission barrier vs mass asymmetry. Extended finite-range macroscopic model.

doi: 10.1088/0256-307X/11/2/001
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1993DA12      Chin.J.Nucl.Phys. 15, No 1, 43 (1993)

G.Dai, Q.Luo

Macro-Potential in Fusion-Fission Process

NUCLEAR REACTIONS 75As(74Ge, X), (74Ge, F), 97Zr(97Zr, X), (97Zr, F), E not given; calculated fusion, fission macro-potential vs elongation. Royer shape equation, Yukawa-plus-exponential form interaction.

1993LU07      Chin.J.Nucl.Phys. 15, No 1, 24 (1993)

Q.Luo, G.Dai, Y.Qi, D.Yan

A Statistical Fitting for 46.7 MeV/u 12C + 159Tb, 197Au and 209Bi Reactions

NUCLEAR REACTIONS 197Au, 209Bi, 159Tb(12C, F), E=46.7 MeV/nucleon; analyzed fission fragment mass distribution data. Statistical binary decay model.

1993LU14      Chin.Phys.Lett. 10, 516 (1993)


Complex Fragment Emission for the Study of the Fermi Energy Domain Nuclear Collisions

NUCLEAR REACTIONS 64Cu(12C, X), E=24-46.4 MeV/nucleon; calculated inclusive mass yield distributions. Fireball model.

doi: 10.1088/0256-307X/10/9/002
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1993LU16      Chin.J.Nucl.Phys. 15, No 3, 229 (1993)

Q.Luo, G.Dai

Fission Macroscopic Model of Rotating Nuclei

NUCLEAR STRUCTURE 252Cf, 159Tb; calculated fission barrier height, saddle point energy. 167Tm; calculated saddle point energy in fission. Rotating nuclei, different liquid drop models.

1993YI02      Chin.J.Nucl.Phys. 15, No 1, 21 (1993)

X.Yin, Q.Luo, W.Li, T.Sun, L.Zhao, R.Sun, D.Wu

The Mass Distributions in Intermediate Energy Heavy Ion Reactions

NUCLEAR REACTIONS 115In(12C, X), E=42 MeV/nucleon; measured fragment yield vs mass. Statistical binary model.

1992CA36      Chin.J.Nucl.Phys. 14, No 4, 286 (1992)

W.Cai, X.Qian, G.Dai, B.Zhang, Q.Luo, Y.Qi, B.Dang, H.Wu, Y.Ge, D.Yan, W.Wen, Z.Liu, J.Xu, H.Zhang

The Residues in 90 and 70 MeV 19F on 28Si Reactions

NUCLEAR REACTIONS 28Si(19F, X), E=70, 90 MeV; measured fusion residue yield vs fragment Z. Model comparison.

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Note: The following list of authors and aliases matches the search parameter Q.Luo: , Q.Z.LUO