NSR Query Results


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NSR database version of April 24, 2024.

Search: Author = M.Li

Found 78 matches.

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2024AS04      Phys.Rev. C 109, 035503 (2024)

A.Ashtari Esfahani, S.Boser, N.Buzinsky, M.C.Carmona-Benitez, C.Claessens, L.de Viveiros, P.J.Doe, M.Fertl, J.A.Formaggio, J.K.Gaison, L.Gladstone, M.Guigue, J.Hartse, K.M.Heeger, X.Huyan, A.M.Jones, K.Kazkaz, B.H.LaRoque, M.Li, A.Lindman, E.Machado, A.Marsteller, C.Matthe, R.Mohiuddin, B.Monreal, R.Mueller, J.A.Nikkel, E.Novitski, N.S.Oblath, J.I.Pena, W.Pettus, R.Reimann, R.G.H.Robertson, D.Rosa De Jesus, G.Rybka, L.Saldana, M.Schram, P.L.Slocum, J.Stachurska, Y.-H.Sun, P.T.Surukuchi, J.R.Tedeschi, A.B.Telles, F.Thomas, M.Thomas, L.A.Thorne, T.Thummler, L.Tvrznikova, W.Van De Pontseele, B.A.VanDevender, J.Weintroub, T.E.Weiss, T.Wendler, A.Young, E.Zayas, A.Ziegler

Cyclotron radiation emission spectroscopy of electrons from tritium β decay and 83mKr internal conversion

doi: 10.1103/PhysRevC.109.035503
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2024GU06      Phys.Rev.Lett. 132, 092501 (2024)

R.J.Guo, S.Y.Wang, C.Liu, R.A.Bark, J.Meng, S.Q.Zhang, B.Qi, A.Rohilla, Z.H.Li, H.Hua, Q.B.Chen, H.Jia, X.Lu, S.Wang, D.P.Sun, X.C.Han, W.Z.Xu, E.H.Wang, H.F.Bai, M.Li, P.Jones, J.F.Sharpey-Schafer, M.Wiedeking, O.Shirinda, C.P.Brits, K.L.Malatji, T.Dinoko, J.Ndayishimye, S.Mthembu, S.Jongile, K.Sowazi, S.Kutlwano, T.D.Bucher, D.G.Roux, A.A.Netshiya, L.Mdletshe, S.Noncolela, W.Mtshali

Evidence for Chiral Wobbler in Nuclei

NUCLEAR REACTIONS 58Ni(19F, n2p)74Br, E=62 MeV; measured reaction products, Eγ, Iγ, γ-γ-coin.; deduced γ-ray energies, the angular distribution from oriented state (ADO) ratios and linear polarization values for the representative linking transitions between bands, level T1/2, partial level scheme, J, π, B(E2), bands, one-phonon wobbling excitation built on the yrast band. Doppler-shift-attenuation method, the detector array AFRODITE.

doi: 10.1103/PhysRevLett.132.092501
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2024LI09      Phys.Lett. B 848, 138385 (2024)

M.Li, T.M.Sprouse, B.S.Meyer, M.R.Mumpower

Atomic masses with machine learning for the astrophysical r process

NUCLEAR STRUCTURE N<160; analyzed available data; deduced mass deviations between Machine-Learning (ML) approach and HFB-32 model, neutron separation energies, abundances, β-decay rates. Comparison with AME 2020 data.

doi: 10.1016/j.physletb.2023.138385
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2024XI04      Nucl.Instrum.Methods Phys.Res. B548, 165262 (2024)

H.Xi, J.Wen, M.Li, H.Gao, H.Zhou, Q.Xie, T.Peng

A study on the validation of a single-particle measurement system for leakage gamma-ray decay curves

doi: 10.1016/j.nimb.2024.165262
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2024YA08      Phys.Rev.Lett. 132, 152502 (2024)

X.Yan, Zh.Cheng, A.Abdukerim, Z.Bo, W.Chen, X.Chen, Ch.Cheng, X.Cui, Y.Fan, D.Fang, Ch.Fu, M.Fu, L.Geng, K.Giboni, L.Gu, X.Guo, Ch.Han, K.Han, Ch.He, J.He, D.Huang, Y.Huang, J.Huang, Zh.Huang, R.Hou, Y.Hou, X.Ji, Y.Ju, Ch.Li, J.Li, M.Li, Sh.Li, T.Li, Q.Lin, J.Liu, X.Lu, C.Lu, L.Luo, Y.Luo, W.Ma, Y.Ma, Y.Mao, Y.Meng, X.Ning, B.Pang, N.Qi, Zh.Qian, X.Ren, N.Shaheed, X.Shang, X.Shao, G.Shen, L.Si, W.Sun, A.Tan, Y.Tao, A.Wang, M.Wang, Q.Wang, Sh.Wang, S.Wang, W.Wang, X.Wang, Zh.Wang, Y.Wei, M.Wu, W.Wu, J.Xia, M.Xiao, X.Xiao, P.Xie, B.Yan, J.Yang, Y.Yang, Y.Yao, Ch.Yu, Y.Yuan, Zh.Yuan, X.Zeng, D.Zhang, M.Zhang, P.Zhang, Sh.Zhang, Sh.Zhang, T.Zhang, W.Zhang, Y.Zhang, Y.Zhang, Y.Zhang, L.Zhao, Q.Zheng, J.Zhou, N.Zhou, X.Zhou, Y.Zhou, Y.Zhou, for the PandaX Collaboration

Searching for Two-Neutrino and Neutrinoless Double Beta Decay of 134Xe with the PandaX-4T Experiment

RADIOACTIVITY 134Xe(2β-); measured decay products, Eβ, Iβ; deduced two-neutrino and neutrinoless T1/2 limits. Comparison with available data. The cylindrical active volume PandaX-4T dual-phase TPC.

doi: 10.1103/PhysRevLett.132.152502
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2024ZH20      Chin.Phys.C 48, 044102 (2024)

D.-M.Zhang, X.-Y.Hu, L.-J.Qi, H.-M.Liu, M.Li, X.-H.Li

Theoretical calculations of proton emission half-lives based on a deformed Gamow-like model

RADIOACTIVITY 108,109I, 112,113Cs, 117La, 121Pr, 135Tb, 141Ho(p); calculated proton emission T1/2 with deformed Gamow-like model, where the deformation effect was included in the Coulomb potential. Comparison with available data.

doi: 10.1088/1674-1137/ad243d
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2023BA40      Eur.Phys.J. A 59, 284 (2023); Erratum Eur.Phys.J. A 60, 23 (2024)

X.H.Bai, Z.Wei, K.Wu, S.Y.Zhang, P.Q.Zhang, Y.N.Han, M.Li, J.Y.Wang, Z.Y.Wei, Z.E.Yao, J.R.Wang, Y.Zhang

Physical design of a high-intensity compact D–D/D–T neutron generator based on the internal antenna RF ion source

NUCLEAR REACTIONS 2,3H(d, n), E=200 keV; measured reaction products, En, In; deduced neutron yields.

doi: 10.1140/epja/s10050-023-01177-3
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2023HE16      Eur.Phys.J. C 83, 1092 (2023)

Z.He, M.Li, W.Bu, C.Xiao, X.Wei, Y.Yang, Z.Qin, S.He, T.Qiu, P.Ma, C.Lu, L.Duan, B.Hu, Y.Zhang, H.Yang

Development of a semi-cylindrical time projection chamber prototype for (3He, t) charge exchange reaction experiment

NUCLEAR REACTIONS 13,17C(3He, t), E ∼ 450 MeV; analyzed available data; deduced rough σ estimate.

doi: 10.1140/epjc/s10052-023-12170-x
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2022LI28      Few-Body Systems 63, 43 (2022)

W.P.Liu, Z.H.Li, J.J.He, X.D.Tang, G.Lian, J.Su, Y.P.Shen, Z.An, F.Q.Chao, J.J.Chang, L.H.Chen, H.Chen, X.J.Chen, Y.H.Chen, Z.J.Chen, B.Q.Cui, X.C.Du, X.Fang, C.B.Fu, L.Gan, B.Guo, Z.Y.Han, X.Y.Guo, G.Z.He, J.R.He, A.Heger, S.Q.Hou, H.X.Huang, N.Huang, B.L.Jia, L.Y.Jiang, S.Kubono, J.M.Li, M.C.Li, K.A.Li, E.T.Li, T.Li, Y.J.Li, M.Lugaro, X.B.Luo, H.Y.Ma, S.B.Ma, D.M.Mei, W.Nan, W.K.Nan, N.C.Qi, Y.Z.Qian, J.C.Qin, J.Ren, C.S.Shang, L.T.Sun, W.L.Sun, W.P.Tan, I.Tanihata, S.Wang, P.Wang, Y.B.Wang, Q.Wu, S.W.Xu, S.Q.Yan, L.T.Yang, Y.Yang, X.Q.Yu, Q.Yue, S.Zeng, L.Zhang, H.Zhang, H.Y.Zhang, L.Y.Zhang, N.T.Zhang, P.Zhang, Q.W.Zhang, T.Zhang, X.P.Zhang, X.Z.Zhang, W.Zhao, J.F.Zhou, Y.Zho

Progress of Underground Nuclear Astrophysics Experiment JUNA in China

NUCLEAR REACTIONS 12C(α, γ), 13C(α, n), 25Mg(p, γ), 19F(p, α), E(cm)<600 keV; measured reaction products; deduced yields near the Gamow window. Comparison with available data.

doi: 10.1007/s00601-022-01735-3
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2022LI53      Phys.Rev. C 106, 035803 (2022)

M.Li, B.S.Meyer

Dependence of (n, γ)- (γ, n) equilibrium r-process abundances on nuclear physics properties

NUCLEAR STRUCTURE 60,61,62,63,64,65,66,67,68,69,70,71,72,73,74,75,76,77,78Cr, 63,64,65,66,67,68,69,70,71,72,73,74,75,76,77,78,79Mn, 65,66,67,68,69,70,71,72,73,74,75,76,77,78,79,80,81,82Fe, 67,68,69,70,71,72,73,74,75,76,77,78,79,80,81,82,83,84Co, 69,70,71,72,73,74,75,76,77,78,79,80,81,82,83,84,85,86,87,88Ni, 71,72,73,74,75,76,77,78,79,80,81,82,83,84,85,86,87,88,89,90,91,92,93Cu, 74,75,76,77,78,79,80,81,82,83,84,85,86,87,88,89,90,91,92,93,94,95,96Zn, 76,77,78,79,80,81,82,83,84,85,86,87,88,89,90,91,92,93,94,95,96,97,98,99,100,101Ga, 78,79,80,81,82,83,84,85,86,87,88,89,90,91,92,93,94,95,96,97,98,99,100,101,102,103,104Ge, 80,81,82,83,84,85,86,87,88,89,90,91,92,93,94,95,96,97,98,99,100,101,102,103,104,105,106,107As, 83,84,85,86,87,88,89,90,91,92,93,94,95,96,97,98,99,100,101,102,103,104,105,106,107,108,109,110,111Se, 85,86,87,88,89,90,91,92,93,94,95,96,97,98,99,100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115,116Br, 88,89,90,91,92,93,94,95,96,97,98,99,100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115,116,117,118,119Kr, 91,92,93,94,95,96,97,98,99,100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115,116,117,118,119,120Rb, 94,95,96,97,98,99,100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115,116,117,118,119,120,121,122,123Sr, 97,98,99,100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115,116,117,118,119,120,121,122,123,124,125Y, 100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,115,116,117,118,119,120,121,122,123,124,125,126Zr, 103,104,105,106,107,108,109,110,111,112,113,114,115,116,117,118,119,120,121,122,123,124,125,126,127,128Nb, 107,108,109,110,111,112,113,114,115,116,117,118,119,120,121,122,123,124,125,126,127,128,129,130Mo, 110,111,112,113,114,115,116,117,118,119,120,121,122,123,124,125,126,127,128,129,130,131,132Tc, 112,114,115,116,117,118,119,120,121,122,123,124,125,126,127,128,129,130,131,132,133,134Ru; 36,37Cl, 37,38,39Ar, 38,39,40,41K, 39,40,41,42,43,44Ca, 40,41,42,43,44,45Sc, 41,42,43,44,45,46,47,48Ti, 42,43,44,45,46,47,48,49,50V, 44,45,46,47,48,49,50,51,52,53Cr, 46,47,48,49,50,51,52,53,54,55,56Mn, 47,48,49,50,51,52,53,54,55,56,57,58Fe, 49,50,51,52,53,54,55,56,57,58,59,60Co, 51,52,53,54,55,56,57,58,59,60,61,62Ni, 53,54,55,56,57,58,59,60,61,62,63,64Cu, 56,57,58,59,60,61,62,63,64,65,66Zn, 58,59,60,61,62,63,64,65,66,67,68Ga, 60,61,62,63,64,65,66,67,68,69,70Ge, 63,64,65,66,67,68,69,70,71As, 65,66,67,68,69,70,71,72,73Se, 68,69,70,71,72,73,74,75Br, 69,70,71,72,73,74,75,76Kr, 72,73,74,75,76,77Rb, 74,75,76,77,78Sr, 76,77,78,79Y, 78,79,80Zr; calculated chemical-potential offset differences for the reference r-process calculations as functions of time step, temperature, and nuclear mass density for the first set of nuclei from A=60-134, and for the second set of nuclei from A=36-80 for the reference νp-process calculations. A=100-220; calculated abundances as a function of nucleon number for the last moment of (n, γ)-(γ, n) equilibrium and the final frozen-out abundances, ratios of masses and partition functions in Z=50 isotopic chain, S(n), isotopic abundances within an isotope chain, equilibrium abundance distributions, normalized equilibrium abundance curves as functions of Coulomb and asymmetry term coefficients. N=40-120; calculated S(n), abundance distribution including the linear and pairing terms of S(n), equilibrium and full abundance distributions for N=50 and N=82 shell crossings as well as for Z=55, 68 and 70 nuclei, S(n) for two shell transitions; deduced effects of nuclear physics inputs on (n, γ)-(γ, n) equilibrium isotopic abundances, and that isotopic abundances versus neutron number in (n, γ)-(γ, n) equilibrium well approximated as Gaussians. Realistic phenomenological nuclear physics model. Comparison with available experimental and evaluated data in REACLIB V2.2 database.

doi: 10.1103/PhysRevC.106.035803
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2022ZH67      Phys.Rev. C 106, 055803 (2022)

L.Y.Zhang, J.Su, J.J.He, R.J.deBoer, D.Kahl, M.Wiescher, D.Odell, Y.J.Chen, X.Y.Li, J.G.Wang, L.Zhang, F.Q.Cao, H.Zhang, Z.C.Zhang, T.Y.Jiao, Y.D.Sheng, L.H.Wang, L.Y.Song, X.Z.Jiang, Z.M.Li, E.T.Li, S.Wang, G.Lian, Z.H.Li, B.Guo, X.D.Tang, L.T.Sun, Q.Wu, J.Q.Li, B.Q.Cui, L.H.Chen, R.G.Ma, N.C.Qi, W.L.Sun, X.Y.Guo, P.Zhang, Y.H.Chen, Y.Zhou, J.F.Zhou, J.R.He, C.S.Shang, M.C.Li, J.P.Cheng, W.P.Liu

Direct measurement of the astrophysical 19F(p, αγ)16O reaction in a deep-underground laboratory

NUCLEAR REACTIONS 19F(p, αγ), E(cm)=72.4-344 keV; measured Eγ, Iγ; deduced astrophysical S-factor, thermonuclear astrophysical reaction rates (range 0.05–1 GK), contributions from different channels. R-matrix analysis with AZURE2 together with a MCMC Bayesian uncertainty estimation. Comparison to other experimental data. 4π BGO γ-array with proton beam from JUNA accelerator at China JinPing underground Laboratory (CJPL).

doi: 10.1103/PhysRevC.106.055803
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2021LI43      Phys.Rev. C 104, 024903 (2021)

M.Li, Y.Zhou, W.Zhao, B.Fu, Y.Mou, H.Song

Investigations on mixed harmonic cumulants in heavy-ion collisions at energies available at the CERN Large Hadron Collider

doi: 10.1103/PhysRevC.104.024903
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2021XI05      Chin.Phys.C 48, 084106 (2021)

C.Xiu, Y.Zhang, M.-J.Li, J.Yang, Y.-X.Chen

Effects of an odd particle on shape phase transitions in odd-even systems

doi: 10.1088/1674-1137/ac05a0
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2021ZH53      Phys.Rev.Lett. 127, 152702 (2021)

L.Y.Zhang, J.Su, J.J.He, M.Wiescher, R.J.deBoer, D.Kahl, Y.J.Chen, X.Y.Li, J.G.Wang, L.Zhang, F.Q.Cao, H.Zhang, Z.C.Zhang, T.Y.Jiao, Y.D.Sheng, L.H.Wang, L.Y.Song, X.Z.Jiang, Z.M.Li, E.T.Li, S.Wang, G.Lian, Z.H.Li, X.D.Tang, H.W.Zhao, L.T.Sun, Q.Wu, J.Q.Li, B.Q.Cui, L.H.Chen, R.G.Ma, B.Guo, S.W.Xu, J.Y.Li, N.C.Qi, W.L.Sun, X.Y.Guo, P.Zhang, Y.H.Chen, Y.Zhou, J.F.Zhou, J.R.He, C.S.Shang, M.C.Li, X.H.Zhou, Y.H.Zhang, F.S.Zhang, Z.G.Hu, H.S.Xu, J.P.Chen, W.P.Liu

Direct Measurement of the Astrophysical 19F(p, αγ)16O Reaction in the Deepest Operational Underground Laboratory

NUCLEAR REACTIONS 19F(p, α), E(cm)=72.4-188.8 keV; measured reaction products, Eγ, Iγ; deduced yields, S-factors, reaction rates. The China Jinping Underground Laboratory (CJPL), JUNA accelerator.

doi: 10.1103/physrevlett.127.152702
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2020GR14      Phys.Rev.X 10, 031037 (2020)

A.Green, H.Li, J.Hui S.Toh, X.Tang, K.C.McCormick, M.Li, E.Tiesinga, S.Kotochigova, S.Gupta

Feshbach Resonances in p-Wave Three-Body Recombination within Fermi-Fermi Mixtures of Open-Shell 6Li and Closed-Shell 173Yb Atoms

ATOMIC PHYSICS 6Li, 173Yb; measured frequencies; deduced magnetic Feshbach resonances as functions of magnetic field, dependence of magnetic Feshbach resonances on the nuclear Zeeman state.

doi: 10.1103/PhysRevX.10.031037
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2019AD05      Phys.Rev. C 99, 035208 (2019)

L.Adhikari, Y.Li, M.Li, J.P.Vary

Form factors and generalized parton distributions of heavy quarkonia in basis light front quantization

doi: 10.1103/PhysRevC.99.035208
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2019KA11      Nucl.Phys. A982, 903c (2019)

J.I.Kapusta, M.Li

High Baryon Densities Achieveable at RHIC and LHC

doi: 10.1016/j.nuclphysa.2018.08.023
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2019LI02      Phys.Rev. C 99, 014906 (2019)

M.Li, J.I.Kapusta

Large baryon densities achievable in high-energy heavy-ion collisions outside the central rapidity region

doi: 10.1103/PhysRevC.99.014906
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2019LI21      Phys.Rev. A 99, 042502 (2019)

B.Li, M.Li, X.Jiang, J.Qian, X.Li, L.Liu, Y.Wang

Optical spectroscopy of nP Rydberg states of 87Rb atoms with a 297-nm ultraviolet laser

ATOMIC PHYSICS 87Rb; measured frequencies; deduced the fine-splitting intervals and oscillator-strength ratios of the nP doublets and the quantum defects and ionization frequency.

doi: 10.1103/PhysRevA.99.042502
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2018LI37      At.Data Nucl.Data Tables 123-124, 86 (2018)

M.C.Li, X.L.Guo, K.Wang, R.Si, C.Y.Zhang, C.Y.Chen, Y.M.Zou, R.Hutton

High-accuracy multi-configuration Dirac-Hartree-Fock calculations of the energy levels and transition properties of Ga-like to Br-like gadolinium ions

ATOMIC PHYSICS Gd; calculated excitation energies, lifetimes, wavelengths, E1, E2, E3, M1 and M2 line strenghs, transition rates, oscillator strengths using fully relativistic multi-configuration Dirac-Hartree-Fock method.

doi: 10.1016/j.adt.2017.11.001
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2018LI65      Phys.Rev. C 98, 064908 (2018)

M.Li, C.Shen

Longitudinal dynamics of high baryon density matter in high-energy heavy-ion collisions

doi: 10.1103/PhysRevC.98.064908
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2017LI01      Phys.Rev. C 95, 011901 (2017)

M.Li, J.I.Kapusta

High baryon densities in heavy ion collisions at energies attainable at the BNL Relativistic Heavy-Ion Collider and the CERN Large Hadron Collider

doi: 10.1103/PhysRevC.95.011901
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2017LI45      Phys.Rev. C 96, 064904 (2017)

M.Li

Reexamining the gluon spectrum in the boost-invariant glasma from a semianalytic approach

doi: 10.1103/PhysRevC.96.064904
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2016CH49      Eur.Phys.J. A 52, 310 (2016)

D.-Y.Chen, Y.-B.Dong, M.-T.Li, W.-L.Wang

Pionic transition from Y(4260) to Zc(3900) in a hadronic molecular scenario

doi: 10.1140/epja/i2016-16310-0
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2016LI43      Phys.Rev. C 94, 024908 (2016)

M.Li, J.I.Kapusta

Analytic calculation of the energy-momentum tensor in heavy ion collisions from color glass condensate

doi: 10.1103/PhysRevC.94.024908
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2015GU14      Int.J.Mod.Phys. E24, 1550040 (2015)

C.L.Guo, G.L.Zhang, M.Li

Calculation of α half-lives for Z ≥ 94 nuclei by proximity potential with a new universal function

RADIOACTIVITY 232,233,234,235,236,237,238,239,240Pu, 238,239,240,241,242,243Am, 240,241,242,243,244Cm, 245,247Bk, 242,244Cf, 250,251,252,253,254Cf, 251,252,253Es, 255Es, 251,252Fm, 254,256Fm, 254No, 261,263,265Sg, 266Sg, 271Sg, 264,265,266,267Bh, 272Bh, 264,265,266,267Hs, 269Hs, 275Hs, 270Ds, 284Cn, 286,288Fl, 290,292Lv, 294Og(α); calculated T1/2. Comparison with experimental data.

doi: 10.1142/S0218301315500408
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2011LI32      Chin.Phys.C 35, 622 (2011)

M.-T.Li, Y.-B.Dong, Z.-Y.Zhang

A study of meson-meson potential in the chiral quark model

doi: 10.1088/1674-1137/35/7/005
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2011ZH45      Chin.Phys.Lett. 28, 112102 (2011)

L.Zhang, Y.Gao, H.-F.Zhang, X.-M.Chen, M.-L.Yu.J.-Q.Li

Symmetry Energy Effects in a Statistical Multifragmentation Model

doi: 10.1088/0256-307X/28/11/112102
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2009LI35      Int.J.Mod.Phys. E18, 1801 (2009)

M.Li, J.Liu

Off-shell twist-four photon light-cone wavefunction for the chirality-conserving quark-antiquark vector current in the low-energy effective theory of QCD

doi: 10.1142/S0218301309013853
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2009LI65      Chin.Phys.C 33, Supplement 1, 123 (2009)

R.-H.Li, Y.-M.Hu, M.-C.Li

An analysis of nuclear charge radii based on the empirical formula

doi: 10.1088/1674-1137/33/S1/039
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2009ZH20      Chin.Phys.Lett. 26, 092301 (2009)

Y.-X.Zhao, Y.-J.Ma, W.-P.Zhou, S.-Y.Wang, G.-Y.Liu, X.-G.Wu, L.-H.Zhu, X.Hao, Y.Liu, X-Q.Li, M-F.Li

Band Structures of the Nucleus 129Cs

NUCLEAR REACTIONS 122Sn(11B, 4n), E=55-60 MeV; measured Eγ, Iγ, γγ-coin.; deduced band structure. Comparison with cranked shell-model calculations.

doi: 10.1088/0256-307X/26/9/092301
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2007LI12      Phys.Rev. C 75, 034304 (2007)

M.L.Li, S.J.Zhu, X.L.Che, Y.N.Yu, Y.J.Chen, H.B.Ding, L.H.Zhu, X.G.Wu, S.X.Wen, C.Y.He, X.Z.Cui, Y.Liu

High-spin states and collective oblate bands in the odd-odd 138Pr nucleus

NUCLEAR REACTIONS 128Te(14N, 4n), E=64 MeV; measured Eγ, Iγ, γγ-coin. 138Pr deduced high-spin levels, J, π, configurations.

doi: 10.1103/PhysRevC.75.034304
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2006CH07      Chin.Phys.Lett. 23, 328 (2006)

X.-L.Che, S.-J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, J.O.Rasmussen, Y.X.Luo, Y.-J.Chen, M.-L.Li, H.-B.Ding, Y.-N.U, I.Y.Lee, W.C.Ma

High Spin Band Structure in 112Ru

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 112Ru deduced high-spin levels, J, π, configurations. Gammasphere array, cranking model analysis, total Routhian surface calculations.

doi: 10.1088/0256-307X/23/2/015
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2006CH24      Phys.Rev. C 73, 054316 (2006)), Erratum Phys.Rev. C 106, 059902 (2022)

Y.J.Chen, S.J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, M.Sakhaee, Y.X.Luo, J.O.Rasmussen, K.Li, I.Y.Lee, X.L.Che, H.B.Ding, M.L.Li

Search for octupole correlations in neutron-rich 148Ce nucleus

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 148Ce deduced levels, J, π, rotational bands, B(E1)/B(E2), possible octupole correlations. Gammasphere array.

doi: 10.1103/PhysRevC.73.054316
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2006CH51      Eur.Phys.J. A 30, 347 (2006)

X.L.Che, S.J.Zhu, M.L.Li, Y.J.Chen, Y.N.U, H.B.Ding, L.H.Zhu, X.G.Wu, G.S.Li, C.Y.He, Y.Liu

High-spin levels based on the 11/2- isomer in 135Ba

NUCLEAR REACTIONS 130Te(9Be, 4n), E=45 MeV; measured Eγ, Iγ, γγ-coin. 135Ba deduced high-spin levels, J, π, configurations.

doi: 10.1140/epja/i2006-10142-1
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2006CH70      High Energy Phys. and Nucl.Phys. (China), Supplement 2, 30, 154 (2006)

X.-L.Che, S.-J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, J.O.Rasmussen, Y.X.Luo, Y.-J.Chen, M.-L.Li, H.-B.Ding

High Spin Band Structure in 112Ru


2006CH71      High Energy Phys. and Nucl.Phys. (China) 30, 740 (2006)

Y.-J.Chen, S.-J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, Y.X.Luo, J.O.Rasmussen, X.-L.Che, H.-B.Ding, M.-L.Li

Octupole Deformed Band and Quasi-γ Band in 146Ce Nucleus


2006DI16      Phys.Rev. C 74, 054301 (2006), Erratum Phys.Rev. C 107, 039905 (2023)

H.B.Ding, S.J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, K.Li, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, C.T.Goodin, X.L.Che, Y.J.Chen, M.L.Li

Identification of band structures and proposed one- and two-phonon γ-vibrational bands in 105Mo

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 105Mo deduced high-spin levels, J, π, configurations. Gammasphere array, total Routhian surface calculations, level systematics in neighboring isotopes discussed.

doi: 10.1103/PhysRevC.74.054301
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2006DI17      Chin.Phys.Lett. 23, 3222 (2006)

H.-B.Ding, S.-J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, X.-L.Che, Y.-J.Chen, M.-L.Li

Search for Double γ-Vibrational Bands in Neutron-Rich 105Mo Nucleus

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 105Mo deduced high-spin levels, J, π, configurations. Gammasphere array, total Routhian surface calculations, level systematics in neighboring isotopes discussed.

doi: 10.1088/0256-307X/23/12/028
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2006DI23      High Energy Phys. and Nucl.Phys. (China), Supplement 2, 30, 172 (2006)

H.-B.Ding, S.-J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, Y.X.Luo, J.O.Rasmussen, I.Y.Lee, X.-L.Che, Y.-J.Chen, M.-L.Li

Identification of the Collective Bands Based on the Single Neutron Orbitals in Neutron-Rich 105Mo Nucleus


2006LI24      Eur.Phys.J. A 28, 1 (2006)

M.L.Li, S.J.Zhu, S.D.Xiao, X.L.Che, Y.N.U, Y.J.Chen, H.B.Ding, L.H.Zhu, G.S.Li, S.X.Wen, X.G.Wu

Identification of band structures in the 137La nucleus

NUCLEAR REACTIONS 130Te(11B, 4n), E=50 MeV; measured Eγ, Iγ, γγ-coin. 137La deduced high-spin levels, J, π, configurations, B(M1)/B(E2). Cranked shell model analysis.

doi: 10.1140/epja/i2005-10276-x
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2006LI63      High Energy Phys. and Nucl.Phys. (China), Supplement 2, 30, 160 (2006)

Y.Liu, N.-L.Liang, M.-F.Li, L.-H.Zhu, X.-G.Wu, C.-Y.He, X.-Z.Cui, L.H.Li, Z.M.Wang, G.S.Li, S.-X.Wen, J.-D.Huo, C.-X.Yang

Level Structure of 155Tm


2006ZH50      High Energy Phys. and Nucl.Phys. (China), Supplement 2, 30, 141 (2006)

S.-J.Zhu, M.-L.Li, X.-L.Che, S.-D.Xiao, Y.-J.Chen, Y.-N.Yu, H.-B.Ding, Q.Xu, L.-H.Zhu, S.-X.Wen, X.-G.Wu, G.-S.Li, C.-Y.He, Y.Liu

Collective Band Structures of the Nuclei near N=82 Closed Shell in A=135 Region


2006ZH51      High Energy Phys. and Nucl.Phys. (China), Supplement 2, 30, 151 (2006)

W.-P.Zhou, Y.-X.Zhao, G.-Y.Zhao, Y.-J.Ma, J.-B.Lu, S.-Y.Wang, L.Sun, D.Yang, X.-F.Li, C.-H.Ma, Y.-Z.Liu, L.-H.Zhu, X.-G.Wu, X-Z.Cui, C.-Y.He, M.-F.Li

New Band Structures and Electromagnetic Properties in 158Tm


2006ZH54      High Energy Phys. and Nucl.Phys. (China) 30, 988 (2006)

W.-P.Zhou, Y.-J.Ma, J.-B.Lu, G.-Y.Zhao, S.-Y.Wang, L.Sun, D.Yang, Y.-X.Zhao, X.-F.Li, Y.-Z.Liu, L.-H.Zhu, X.G.Wu, X.-Z.Cui, C.-Y.He, M.-F.Li

Signature Inversion in Weakly-Deformed Doubly-Odd 158Tm


2005LI63      Phys.Rev. C 72, 067301 (2005)

G.Liang, S.Wang, Y.Liu, Y.Ma, J.Lu, M.Li, X.Cui, G.Zhao, X.Li, X.Wu, L.Zhu, G.Li, S.Wen, C.Yang

Gallagher-Moszkowski (GM) doublet bands in 162Ho

NUCLEAR REACTIONS 160Gd(7Li, 5n), E=49 MeV; measured Eγ, Iγ, γγ-coin. 162Ho deduced high-spin levels, J, π, B(M1)/B(E2), configurations.

doi: 10.1103/PhysRevC.72.067301
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2005LI67      High Energy Phys. and Nucl.Phys. (China) 29, 1 (2005)

R.-J.Li, Y.-J.Ma, X.-G.Wu, Y.-H.Zhang, L.-H.Zhu, S.-Y.Wang, M.-F.Li, G.-D.Liang, X.-Z.Cui, X.-F.Li, G.-Y.Zhao, J.-B.Lu, Y.-Z.Liu Z.-M.Wang, G.-S.Li, S.-X.Wen, C.-X.Yang, T.Komatsubara, K.Furuno

Identification of High-Spin States in Odd-Odd 126I


2005UU01      J.Phys.(London) G31, B1 (2005)

Y.-N.U, S.J.Zhu, M.Sakhaee, L.M.Yang, C.Y.Gan, L.Y.Zhu, R.Q.Xu, X.L.Che, M.L.Li, Y.J.Chen, S.X.Wen, X.G.Wu, L.H.Zhu, G.S.Li, J.Peng, S.Q.Zhang, J.Meng

Search for the chiral doublet bands in 122Cs

NUCLEAR REACTIONS 107Ag(19F, 3np), E=85 MeV; measured Eγ, Iγ, γγ-coin. 122Cs deduced high-spin levels, J, π, configurations, B(M1)/B(E2), chiral doublet bands. Level systematics in neighboring isotopes compared.

doi: 10.1088/0954-3899/31/3/B01
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2005ZH16      Eur.Phys.J. A 24, 199 (2005)

S.J.Zhu, S.D.Xiao, X.L.Che, Y.N.U, M.L.Li, Y.J.Chen, L.H.Zhu, G.S.Li, S.X.Wen, X.G.Wu

High-spin states and band structures in the doubly odd 136La nucleus

NUCLEAR REACTIONS 130Te(11B, 5n), E=60 MeV; measured Eγ, Iγ, γγ-coin. 136La deduced high-spin levels, J, π, configurations.

doi: 10.1140/epja/i2004-10136-3
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2005ZH44      High Energy Phys. and Nucl.Phys. (China) 29, 23 (2005)

S.-J.Zhu, Z.Zhang, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, S.-D.Xiao, X.-L.Che, Y.-N.Yu, M.-L.Li, R.-C.Zhen, I.Y.Lee, J.O.Rasmussen, W.C.Ma

Further Research on Level Structures of Neutron-Rich Odd-A Ru Nuclei


2005ZH46      High Energy Phys. and Nucl.Phys. (China) 29, 1047 (2005)

S.-J.Zhu, S.-D.Xiao, X.-L.Che, Y.-N.Yu, M.-L.Li, Y.-J.Chen, L.-H.Zhu, S.-X.Wen, X.-G.Wu, G.-S.Li

Collective Dand Structures in Doubly Odd 136La Nucleus


2004CH54      Chin.Phys.Lett. 21, 1904 (2004)

X.-L.Che, S.-J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, Y.-N.U, M.-L.Li, R.-C.Zheng, I.Y.Lee, J.O.Rasmussen, Y.X.Luo, W.C.Ma

High-Spin Structure in Neutron-Rich 108Ru Nucleus

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 108Ru deduced high-spin levels, J, π, configurations. Gammasphere array, total Routhian surface calculations.

doi: 10.1088/0256-307X/21/10/011
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2004LI66      Chin.Phys.Lett. 21, 2147 (2004)

M.-L.Li, S.-J.Zhu, J.H.Hamilton, A.V.Ramayya, J.K.Hwang, X.-L.Che, Z.Zhang, Y.-N.Yu, R.-C.Zheng, I.Y.Lee, J.O.Rasmussen, Y.X.Luo, W.C.Ma

Two-Quasiparticle Bands and Isomers in 98Sr

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, prompt and delayed γγ-coin. 98Sr deduced levels J, π, T1/2, configurations, rotational bands. 98Sr, 148Ce deduced levels T1/2. Gammasphere array.

doi: 10.1088/0256-307X/21/11/020
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2004LI80      High Energy Phys. and Nucl.Phys. (China), Supplement 1, 28, 31 (2004)

Y.Liu, M.-F.Li, L.-H.Zhu, Z.-M.Wang, X.-G.Wu, X.-Z.Cui, C.-Y.He, Z.-L.Zhang, R.Meng, R.-G.Ma, G.-S.Li, S.-X.Wen, C.-X.Yang, J.-D.Huo

Experimental Study on High Spin States of 156Tm


2004ZH46      High Energy Phys. and Nucl.Phys. (China), Supplement 1, 28, 5 (2004)

S.-J.Zhu, Y.-N.Yu, S.-D.Xiao, X.-L.Che, M.-L.Li, C.-Y.Gan, R.-Q.Xu, M.Sakhaee, Y.-J.Chen, L.-H.Zhu, S.-X.Wen, X.-G.Wu, G.-S.Li

High Spin-States and Shape Driving Effects in A=130 Nuclear Region


2003DO07      Phys.Rev. C 68, 015207 (2003)

Y.B.Dong, M.F.Li

Nucleon spin structure function and quark-hadron duality

NUCLEAR STRUCTURE 1H; calculated spin structure function, resonance effects, violation of quark-hadron duality. Constituent quark model.

doi: 10.1103/PhysRevC.68.015207
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2001CH03      Phys.Rev. C63, 014606 (2001)

G.Chen, M.Li, J.L.Weil, M.T.McEllistrem

Neutron Scattering in 140, 142Ce and Strengths of Neutrons and Protons in Collective Levels of 140Ce

NUCLEAR REACTIONS 140,142Ce(n, n), (n, n'), E=7.5 MeV; measured σ(θ). 140,142Ce deduced level configurations. Comparisons with model predictions.

doi: 10.1103/PhysRevC.63.014606
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2001MB05      Chin.Phys.Lett. 18, 903 (2001)

H.-L.Ma, M.-S.Li, F.-J.Yang

Changes of the Nuclear Charge Distribution of Nd from Optical Isotope Shifts

NUCLEAR MOMENTS 142,143,144,145,146,148,150Nd; measured hfs, isotope shifts; deduced quadrupole deformation parameter.


2000LI39      Phys.Rev. A62, 052504 (2000)

M.Li, H.Ma, M.Chen, F.Lu, J.Tang, F.Yang

Hyperfine-Structure Measurements in 141Pr II and 143, 145Nd II by Collinear Laser-Ion Beam Spectroscopy

NUCLEAR MOMENTS 141Pr, 143,145Nd; measured hfs; deduced parameters. Collinear laser-ion beam spectroscopy.

doi: 10.1103/PhysRevA.62.052504
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2000LI51      Hyperfine Interactions 128, 417 (2000)

M.Li, H.Ma, M.Chen, Z.Chen, F.Lu, J.Tang, F.Yang

Measurement of hyperfine structure in the lines 578.77 nm and 587.04 nm of PrII

NUCLEAR MOMENTS 141Pr; measured hfs. Fast ion-beam-laser spectroscopy.

doi: 10.1023/A:1012660321742
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2000ZH27      Chin.Phys.Lett. 17, 480 (2000)

S.-J.Zhu, L.-Y.Zhu, M.Li, C.-Y.Gan, M.Sakhaee, L.-M.Yang, Z.Zhang, Z.Jiang, G.-L.Long, M.-G.Jon, S.-X.Wen, X.-G.Wu, X.-A.Liu

Observation of a Collective Oblate Band in 137Ce

NUCLEAR REACTIONS 124Sn(18O, 5n), E=78 MeV; measured Eγ, Iγ, γγ-coin. 137Ce deduced high-spin levels, J, π, configurations, oblate deformation. Cranked mean field calculations.


2000ZH39      Phys.Rev. C62, 044310 (2000)

S.J.Zhu, L.Y.Zhu, M.Li, C.Y.Gan, M.Sakhaee, L.M.Yang, R.Q.Xu, Z.Zhang, Z.Jiang, G.L.Long, S.X.Wen, X.G.Wu, X.A.Liu

High Spin States and a Collective Oblate Band in 137Ce

NUCLEAR REACTIONS 124Sn(18O, 5n), E=78 MeV; measured Eγ, Iγ, γγ-coin. 137Ce deduced high-spin levels, J, π, configurations, collective oblate band. Particle-rotor model calculations, comparisons with neighboring nuclides.

doi: 10.1103/PhysRevC.62.044310
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2000ZH59      High Energy Phys. and Nucl.Phys. (China) 24, 418 (2000)

S.-J.Zhu, M.-G.Wang, L.-Y.Zhu, M.Li, C.-Y.Gan, L.-M.Yang, M.Sakhaee, S.-L.Pau, J.-K.Deng, G.-L.Long, J.H.Hamilton, A.V.Ramayya, B.R.S.Babu, J.K.Hwang, W.C.Ma, J.Komicki, J.D.Cole, R.Aryaeinejad, M.W.Drigert, J.O.Rasmussen, M.A.Stoyer, S.Y.Chu, K.E.Gregorich, M.F.Mohar, S.G.Prussin, I.Y.Lee, Yu.Ts.Oganessian, G.M.Ter-Akopian, A.V.Daniel

Octupole Deformation in Neutron Rich 145, 147La Nuclei


1999ZH05      Phys.Rev. C59, 1316 (1999)

S.J.Zhu, J.H.Hamilton, A.V.Ramayya, M.G.Wang, J.K.Hwang, E.F.Jones, L.K.Peker, B.R.S.Babu, G.Drafta, W.C.Ma, G.L.Long, L.Y.Zhu, M.Li, C.Y.Gan, T.N.Ginter, J.Kormicki, J.K.Deng, D.T.Shi, W.E.Collins, J.D.Cole, R.Aryaeinejad, M.W.Drigert, J.O.Rasmussen, R.Donangelo, J.Gilat, S.Asztalos, I.Y.Lee, A.O.Macchiavelli, S.Y.Chu, K.E.Gregorich, M.F.Mohar, M.A.Stoyer, R.W.Lougheed, K.J.Moody, J.F.Wild, S.G.Prussin, G.M.Ter-Akopian, A.V.Daniel, Yu.Ts.Oganessian

Octupole Correlations in Neutron-Rich 145, 147La Nuclei: Coriolis-limit-coupling bands with aligned h11/2 Proton

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 145,147La deduced high-spin levels, possible J, π, B(E1)/B(E2), octupole correlations. Cranked shell model analysis. Gammasphere array.

doi: 10.1103/PhysRevC.59.1316
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1999ZH08      Chin.Phys.Lett. 16, 169 (1999)

S.-J.Zhu, M.-G.Wang, J.H.Hamilton, A.V.Ramayya, B.R.S.Babu, W.C.Ma, G-L.Long, L.-Y.Zhu, M.Li, M.Sakhaee, C.-Y.Gan, L.-M.Yang, J.Kormicki, J.D.Cole, R.Aryaeinejad, M.W.Drigert, J.O.Rasmussen, M.A.Stoyer, S.Y.Chu, K.E.Gregorich, M.F.Mohar, S.G.Prussin, I.Y.Lee, Yu.Ts.Oganessian, G.M.Ter-Akopian, A.V.Daniel

Octupole Deformation Bands of πh11/2 in Neutron-Rich 145, 147La Nuclei

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 145,147La deduced high-spin levels, possible J, π, configurations, B(E1)/B(E2), octupole deformation. Gammasphere array.


1999ZH28      Chin.Phys.Lett. 16, 635 (1999)

S.-J.Zhu, M.Li, L.-Y.Zhu, C.-Y.Gan, M.Sakhaee, L.-M.Yang, S.-L.Pau, G.-L.Long, J.-K.Deng, S.-X.Wen, X.-G.Wu, X.-A.Liu

Identification of Collective Oblate Bands in 138Ce

NUCLEAR REACTIONS 124Sn(18O, 4n), E=78 MeV; measured Eγ, Iγ, γγ-coin. 138Ce deduced high-spin levels, J, π, configurations, oblate deformation. Moments of inertia in neighboring nuclides discussed.

doi: 10.1088/0256-307X/16/9/005
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1999ZH31      Phys.Rev. C60, 051304 (1999)

S.J.Zhu, J.H.Hamilton, A.V.Ramayya, E.F.Jones, J.K.Hwang, M.G.Wang, X.Q.Zhang, P.M.Gore, L.K.Peker, G.Drafta, B.R.S.Babu, W.C.Ma, G.L.Long, L.Y.Zhu, C.Y.Gan, L.M.Yang, M.Sakhaee, M.Li, J.K.Deng, T.N.Ginter, C.J.Beyer, J.Kormicki, J.D.Cole, R.Aryaeinejad, M.W.Drigert, J.O.Rasmussen, S.Asztalos, I.Y.Lee, A.O.Macchiavelli, S.Y.Chu, K.E.Gregorich, M.F.Mohar, G.M.Ter-Akopian, A.V.Daniel, Yu.Ts.Oganessian, R.Donangelo, M.A.Stoyer, R.W.Lougheed, K.J.Moody, J.F.Wild, S.G.Prussin, J.Kliman, H.C.Griffin

Octupole Correlations in Neutron-Rich 143, 145Ba and a Type of Superdeformed Band in 145Ba

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 143,145Ba deduced high-spin levels, J, π, B(E1)/B(E2), possible stable octupole deformation. Gammasphere array.

doi: 10.1103/PhysRevC.60.051304
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1998ZH39      Chin.Phys.Lett. 15, 793 (1998)

S.-J.Zhu, C.-Y.Gan, J.H.Hamilton, A.V.Ramayya, B.R.S.Babu, M.Sakhaee, W.C.Ma, G.-L.Long, J.-K.Deng, L.-Y.Zhu, M.Li, L.-M.Yang, J.Kormicki, J.D.Cole, R.Aryaeinejad, Y.K.Dardenne, M.W.Drigert, J.O.Rasmussen, M.A.Stoyer, S.Y.Chu, K.E.Gregorich, M.F.Mohar, S.G.Prussin, I.Y.Lee, N.R.Johnson, F.K.McGowan

Collective Band Structures in the Neutron-Rich 107, 109Ru Nuclei

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 107,109Ru deduced high-spin levels, J, π, configurations. Particle-rotor model analysis. Gammasphere array.

doi: 10.1088/0256-307X/15/11/005
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1998ZH48      High Energy Phys. and Nucl.Phys. (China) 22, 885 (1998)

L.Zhu, S.Zhu, M.Li, J.H.Hamilton, A.V.Ramayya, B.R.S.Babu, W.C.Ma, J.O.Rasmussen, M.A.Stoyer, I.Y.Lee

Octupole deformation in neutron-rich 144, 146Ce nuclei


1997GA11      Phys.Rev.Lett. 78, 4545 (1997)

P.E.Garrett, M.Kadi, M.Li, C.A.McGrath, V.Sorokin, M.Yeh, S.W.Yates

K(π) = 0+ and 4+ Two-Phonon γ-Vibrational States in 166Er

NUCLEAR REACTIONS 166Er(n, n'γ), E=1.4-3.1 MeV; measured γγ-coin, γ(θ), Eγ, Iγ. 166Er deduced levels, J, π, B(λ), K, shape features.

doi: 10.1103/PhysRevLett.78.4545
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1997GA13      Phys.Lett. 400B, 250 (1997)

P.E.Garrett, M.Kadi, C.A.McGrath, V.Sorokin, M.Li, M.Yeh, S.W.Yates

The Nature of 0+ Excitations in 166Er

NUCLEAR REACTIONS 166Er(n, n'γ), E=1.4-3.1 MeV; measured Eγ, Iγ(θ), γγ-coin, DSA. 166Er levels deduced transitions, T1/2, B(λ), shape features.

doi: 10.1016/S0370-2693(97)00373-0
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1997ZH23      J.Phys.(London) G23, L77 (1997)

S.J.Zhu, J.H.Hamilton, A.V.Ramayya, M.G.Wang, E.F.Jones, J.K.Hwang, B.R.S.Babu, W.C.Ma, G.L.Long, M.Li, L.Y.Zhu, J.K.Deng, T.N.Ginter, J.Kormicki, J.D.Cole, R.Aryaeinejad, Y.K.Dardenne, M.W.Drigert, G.Ter-Akopian, Yu.Ts.Oganessian, A.Daniel, J.O.Rasmussen, M.A.Stoyer, I.Y.Lee, S.Y.Chu, K.E.Gregorich, M.F.Mohar, S.G.Prussin, N.R.Johnson, F.K.McGowan

High Spin Octupole Correlations in the N = 85, 139Xe and 141Ba Isotones

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγγ-coin. 139Xe, 141Ba deduced high-spin levels, J, π, B(E1)/B(E2) ratios, configurations, octupole bands. Gammasphere array. Band systematics from other data input.


1997ZH25      Chin.Phys.Lett. 14, 569 (1997)

S.-J.Zhu, M.-G.Wang, J.H.Hamilton, A.V.Ramayya, B.R.S.Babu, W.C.Ma, G.-L.Long, J.-K.Deng, L.-Y.Zhu, M.Li, T.N.Ginter, J.Kormicki, J.D.Cole, R.Aryaeinejad, Y.K.Dardenne, M.W.Drigert, J.O.Rasmussen, Yu.Ts.Oganessian, M.A.Stoyer, S.Y.Chu, K.E.Gregorich, M.F.Mohar, S.G.Prussin, I.Y.Lee, N.R.Johnson, F.K.McGowan

Reflection Asymmetric Shapes in the Neutron-Rich 140,143Ba Isotopes

RADIOACTIVITY 252Cf(SF); measured Eγ, Iγ, γγ-coin. 140,143Ba deduced levels, J, π, B(E1)/B(E2), γ-multipolarity, octupole deformation, other shape related features.


1995CH77      Chin.J.Nucl.Phys. 17, No 2, 167 (1995)

Y.-T.Chen, Z.-M.Chen, H.-Q.Qi, M.-T.Li, G.-Y.Tang, G.-H.Zhang, J.-H.Fan, Yu.M.Gledenov, G.Khuukhenkhuu

Angular Distribution and Cross Section Measurements of 64Zn(n, α)61Ni Reaction for Neutron Energy 5 MeV

NUCLEAR REACTIONS 64Zn(n, α), E=5 MeV; measured σ(θα), Eα, Iα. Twin gridded chamber.


1995LI56      Chin.J.Nucl.Phys. 17, No 1, 28 (1995)

Q.-L.Li, M.Li, X.-Q.Lu, Y.-H.Cheng, K.Zhao, Q.-H.Zhang, S.-Y.Li, Y.-D.Wan, C.-L.Jiang

Study of Resonance Structure in 31P + 12C Collision System

NUCLEAR REACTIONS 31P(12C, 12C), E=11.2-25.1 MeV; measured σ(θ) vs E; deduced resonance structure.


1994ZH09      Z.Phys. A348, 95 (1994)

K.Zhao, X.Lu, Y.Cheng, Q.Li, M.Li, Z.Li, J.Guo, S.Li, Q.Zhang, X.Song, C.Jiang

Comparison of the Elastic and Inelastic Scatterings between 152Sm + 12C and 148Nd + 16O

NUCLEAR REACTIONS 152Sm(12C, 12C), (12C, 12C'), E=63.2 MeV; 148Nd(16O, 16O), (16O, 16O'), E=90.9 MeV; measured σ(θ); deduced interference pattern evidence in inelastic scattering, model parameters.

doi: 10.1007/BF01289595
Citations: PlumX Metrics


1991LI40      Chin.J.Nucl.Phys. 13, No 4, 339 (1991)

G.Liu, Z.Guo, E.Feng, E.Wu, S.Yin, D.Yan, E.Fan, H.Xi, Q.Zhang, X.Lu, K.Zhao, Y.Cheng, Q.Li, M.Li, C.Jiang

Experimental Research of Reaction Mechanism of 16O(96 MeV) + 64Ni System

NUCLEAR REACTIONS 64Ni(16O, X), E=96 MeV; measured σ(fragment θ, E) for X=He-O; deduced energy integrated σ(fragment θ), light fragment emission mechanism.


1991ZH30      Chin.J.Nucl.Phys. 13, No 3, 197 (1991)

K.Zhao, X.Lu, Y.Cheng, Q.Li, M.Li, Z.Li, J.Guo, S.Li, Q.Zhang, X.Song, C.Jiang

Study of Strong Coulomb Coupling and Interference of Coulomb Excitation with Nuclear Excitation in 152Sm + 12C

NUCLEAR REACTIONS 152Sm(12C, 12C), (12C, 12C'), E=63.2 MeV; measured σ(θ); deduced Coulomb, nuclear excitation interference. Coupled-channels model.


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Note: The following list of authors and aliases matches the search parameter M.Li: , M.C.LI, M.F.LI, M.J.LI, M.L.LI, M.S.LI, M.T.LI