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NSR database version of April 11, 2024.

Search: Author = Ye Yanlin

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2023HA40      Commun. Phys. 6, 220 (2023)

J.Han, Y.Ye, J.Lou, X.Yang, Q.Li, Z.Yang, Y.Yang, J.Wang, J.Xu, Y.Ge, H.Hua, Z.Li, B.Yang, Y.Liu, S.Bai, K.Ma, J.Chen, G.Li, Z.Hu, H.Yu, Z.Tan, L.Yang, S.Wang, L.Tao, W.Liu, Y.Jiang, J.Li, D.Wang, S.Huang, Y.Chen, W.L.Pu, K.Wei, J.Ma, H.Yang, P.Ma, S.Xu, Z.Bai, S.Jin, F.Duan, Y.Song, L.Hu, Y.Li, J.Li, S.Zhang, M.Huang, D.Wang, Z.Li

Nuclear linear-chain structure arises in carbon-14

RADIOACTIVITY 14C(α) [from 1H(14C, 14C'), E=23 MeV/nucleon]; measured decay products, Eα, Iα. 14C; deduced Q-value, excitation energy spectra, resonant states in 14C, J, π, widths, σ(θ). Comparison with the antisymmetrized molecular dynamics (AMD) calculations. The Radioactive Ion Beam Line at the Heavy Ion Research Facility in Lanzhou (HIRFL-RIBLL1).

doi: 10.1038/s42005-023-01342-6
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2020YE01      Phys.Rev. C 101, 034915 (2020)

Y.Ye, Y.Wang, Q.Li, D.Lu, F.Wang

Beam energy dependence of cumulants of the net-baryon, net-charge, and deuteron multiplicity distributions i Au + Au collisions at√ sNN = 3.0 - 5.0 GeV

doi: 10.1103/PhysRevC.101.034915
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2018VA08      Phys.Lett. B 782, 99 (2018)

Zs.Vajta, D.Sohler, Y.Shiga, K.Yoneda, K.Sieja, D.Steppenbeck, Zs.Dombradi, N.Aoi, P.Doornenbal, J.Lee, H.Liu, M.Matsushita, S.Takeuchi, H.Wang, H.Baba, P.Bednarczyk, Zs.Fulop, S.Go, T.Hashimoto, E.Ideguchi, K.Ieki, K.Kobayashi, Y.Kondo, R.Minakata, T.Motobayashi, D.Nishimura, H.Otsu, H.Sakurai, Y.Sun, A.Tamaii, R.Tanaka, Z.Tian, T.Yamamoto, X.Yang, Z.Yang, Y.Ye, R.Yokoyama, J.Zenihiro

Proton single particle energies next to 78Ni: Spectroscopy of 77Cu via single proton knock-out reaction

NUCLEAR REACTIONS 9Be(78Zn, p)77Cu, E=240 MeV/nucleon; measured reaction products, Eγ, Iγ; deduced γ-ray energies, J, π, level scheme. Comparison with shell model calculations.

doi: 10.1016/j.physletb.2018.05.023
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2018YE05      Phys.Rev. C 98, 054620 (2018)

Y.Ye, Y.Wang, J.Steinheimer, Y.Nara, H.-j.Xu, P.Li, D.Lu, Q.Li, H.Stoecker

Cumulants of the baryon number from central Au+Au collision at Elab = 1.23GeV/nucleon reveal the nuclear mean-field potentials

NUCLEAR REACTIONS 197Au(197Au, X), E=1.23 GeV/nucleon; calculated yield distributions of all baryons as functions of the reduced longitudinal and transverse rapidities, rapidity and time dependence for the cumulants and their ratios of free baryons, clustered baryons, and free protons using the Ultrarelativistic quantum molecular dynamics (UrQMD) and the JAM model, with soft momentum dependent (SM), the hard momentum-dependent (HM), and the hard without momentum-dependent (H) mean-field potentials. Relevance to experiments of HADES Collaboration at GSI, and STAR Collaboration at BNL.

doi: 10.1103/PhysRevC.98.054620
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2016SH07      Phys.Rev. C 93, 024320 (2016)

Y.Shiga, K.Yoneda, D.Steppenbeck, N.Aoi, P.Doornenbal, J.Lee, H.Liu, M.Matsushita, S.Takeuchi, H.Wang, H.Baba, P.Bednarczyk, Zs.Dombradi, Zs.Fulop, S.Go, T.Hashimoto, M.Honma, E.Ideguchi, K.Ieki, K.Kobayashi, Y.Kondo, R.Minakata, T.Motobayashi, D.Nishimura, T.Otsuka, H.Otsu, H.Sakurai, N.Shimizu, D.Sohler, Y.Sun, A.Tamii, R.Tanaka, Z.Tian, Y.Tsunoda, Zs.Vajta, T.Yamamoto, X.Yang, Z.Yang, Y.Ye, R.Yokoyama, J.Zenihiro

Investigating nuclear shell structure in the vicinity of 78Ni: Low-lying excited states in the neutron-rich isotopes 80, 82Zn

NUCLEAR REACTIONS 9Be(80Zn, 80Zn'), (81Ga, 80Zn), (80Ga, 78Zn), (83Ge, 82Ge), (83As, 82Ge), E=250 MeV/nucleon, [secondary 80Zn, 80,81Ga, 82,83Ge, 83As and other beams from 9Be(238U, X), E=345 MeV/nucleon primary reaction]; measured yields of reaction products, Eγ, Iγ, Doppler corrected γ rays, γγ-coin, level half-lives by line-shape analysis using BigRIPS separator, ZeroDegree spectrometer for particle identification and detection, and DALI2 array of NaI(Tl) detectors for γ rays at RIBF-RIKEN facility. 76,78,80,82Zn, 82Ge; deduced levels, J, π, B(E2), configurations. Comparison with previous experimental results, and with calculations using Monte Carlo shell-model (MCSM) and shell-model with JUN45 interaction. Systematics of energies of first 2+ and 4+ states and E(4+/2+) ratios in 74,76,78,80,82Zn, 82Ge, 84Se, 86Kr.

doi: 10.1103/PhysRevC.93.024320
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2016WA28      Phys.Rev. C 94, 051301 (2016)

H.Wang, N.Aoi, S.Takeuchi, M.Matsushita, T.Motobayashi, D.Steppenbeck, K.Yoneda, H.Baba, Zs.Dombradi, K.Kobayashi, Y.Kondo, J.Lee, H.Liu, R.Minakata, D.Nishimura, H.Otsu, H.Sakurai, D.Sohler, Y.Sun, Z.Tian, R.Tanaka, Zs.Vajta, Z.Yang, T.Yamamoto, Y.Ye, R.Yokoyama

First spectroscopic information from even-even nuclei in the region "southeast" of 132Sn: Neutron-excitation dominance of the 2+1 state in 132Cd

NUCLEAR REACTIONS 9Be(134Sn, 132Cd), E not given, [secondary 134Sn beam from W(238U, F), E=345 MeV/nucleon primary reaction and using BigRIPS fragment separator]; measured reaction residues through identification by TOF, Bρ, ΔE, and total kinetic energy (TKE) using the ZeroDegree spectrometer, Eγ, Iγ, (particle)γ-coin using DALI2 array at RIBF-RIKEN facility; 132Cd; deduced levels, J, π, proton-neutron configuration mixing in the first 2+ state. Comparison with mean-field calculations. Systematics of experimental and theoretical first 2+ energies in N=84, Z=48-66, Z=48, N=50-82, and Z=52, N=54-86 nuclei.

doi: 10.1103/PhysRevC.94.051301
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2015LI28      Phys.Rev. C 92, 014608 (2015)

K.Li, Y.Ye, T.Motobayashi, H.Scheit, P.Doornenbal, S.Takeuchi, N.Aoi, M.Matsushita, E.Takeshita, D.Pang, H.Sakurai

Relativistic Coulomb excitation in 32Mg near 200 MeV/nucleon with a thick target

NUCLEAR REACTIONS Pb(32Mg, 32Mg'), E=195 MeV/nucleon, [32Mg secondary beam from 9Be(48Ca, X), E=345 MeV/nucleon primary reaction]; measured Eγ, Iγ, scattered 32Mg spectra, (32Mg)γ-coin, angular distributions, Coulomb excitation yield using BigRIPS and ZeroDegree spectrometers, and DALI2 array at RIBF-RIKEN facility, 32Mg; deduced first 2+ level, B(E2). Comparison with coupled-channel calculation and with previous experimental values. Discussed usefulness of the Coulomb excitation method for extracting B(E2) values at high incident energies.

doi: 10.1103/PhysRevC.92.014608
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetE2483. Data from this article have been entered in the XUNDL database. For more information, click here.


2014KA30      Phys.Rev.Lett. 113, 022502 (2014)

J.Katich, X.Qian, Y.X.Zhao, K.Allada, K.Aniol, J.R.M.Annand, T.Averett, F.Benmokhtar, W.Bertozzi, P.C.Bradshaw, P.Bosted, A.Camsonne, M.Canan, G.D.Cates, C.Chen, J.-P.Chen, W.Chen, K.Chirapatpimol, E.Chudakov, E.Cisbani, J.C.Cornejo, F.Cusanno, M.M.Dalton, W.Deconinck, C.W.de Jager, R.De Leo, X.Deng, A.Deur, H.Ding, P.A.M.Dolph, C.Dutta, D.Dutta, L.El Fassi, S.Frullani, H.Gao, F.Garibaldi, D.Gaskell, S.Gilad, R.Gilman, O.Glamazdin, S.Golge, L.Guo, D.Hamilton, O.Hansen, D.W.Higinbotham, T.Holmstrom, J.Huang, M.Huang, H.F.Ibrahim, M.Iodice, X.Jiang, G.Jin, M.K.Jones, A.Kelleher, W.Kim, A.Kolarkar, W.Korsch, J.J.LeRose, X.Li, Y.Li, R.Lindgren, N.Liyanage, E.Long, H.-J.Lu, D.J.Margaziotis, P.Markowitz, S.Marrone, D.McNulty, Z.-E.Meziani, R.Michaels, B.Moffit, C.Munoz Camacho, S.Nanda, A.Narayan, V.Nelyubin, B.Norum, Y.Oh, M.Osipenko, D.Parno, J.C.Peng, S.K.Phillips, M.Posik, A.J.R.Puckett, Y.Qiang, A.Rakhman, R.D.Ransome, S.Riordan, A.Saha, B.Sawatzky, E.Schulte, A.Shahinyan, M.H.Shabestari, S.Sirca, S.Stepanyan, R.Subedi, V.Sulkosky, L.-G.Tang, A.Tobias, G.M.Urciuoli, I.Vilardi, K.Wang, Y.Wang, B.Wojtsekhowski, X.Yan, H.Yao, Y.Ye, Z.Ye, L.Yuan, X.Zhan, Y.Zhang, Y.-W.Zhang, B.Zhao, X.Zheng, L.Zhu, X.Zhu, X.Zong

Measurement of the Target-Normal Single-Spin Asymmetry in Deep-Inelastic Scattering from the Reaction 3He ↑ (e, e')X

doi: 10.1103/PhysRevLett.113.022502
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2013WA28      Phys.Rev. C 88, 054318 (2013)

H.Wang, N.Aoi, S.Takeuchi, M.Matsushita, P.Doornenbal, T.Motobayashi, D.Steppenbeck, K.Yoneda, H.Baba, L.Caceres, Zs.Dombradi, K.Kobayashi, Y.Kondo, J.Lee, K.Li, H.Liu, R.Minakata, D.Nishimura, H.Otsu, S.Sakaguchi, H.Sakurai, H.Scheit, D.Sohler, Y.Sun, Z.Tian, R.Tanaka, Y.Togano, Zs.Vajta, Z.Yang, T.Yamamoto, Y.Ye, R.Yokoyama

Collectivity evolution in the neutron-rich Pd isotopes toward the N=82 shell closure

NUCLEAR REACTIONS W(238U, X)132Sn/133Sn, E=345 MeV/nucleon; 9Be(132Sn, X), (133Sn, X)120Pd/122Pd/124Pd/126Pd, E=230 MeV/nucleon; measured mass-to-charge ratio A/Q spectrum by energy loss, TOF and magnetic rigidity correlations using BigRIPS separator and ZeroDegree spectrometer at RIBF-RIKEN facility; measured Eγ, Iγ, (particle)γ-coin using DALI2 array of scintillation detectors. 120,122,124,126Pd; deduced first 2+ and 4+ levels. Systematics of E(first 4+)/E(first 2+) ratios for N(even)=50-82 Pd, Xe and Cd isotopes, and comparison with IBM-2 calculations.

doi: 10.1103/PhysRevC.88.054318
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Data from this article have been entered in the XUNDL database. For more information, click here.


2010FU13      Int.J.Mod.Phys. E19, 2480 (2010)

Y.Fujii, A.Chiba, D.Doi, T.Gogami, O.Hashimoto, H.Kanda, M.Kaneta, D.Kawama, K.Maeda, T.Maruta, A.Matsumura, S.Nagao, S.N.Nakamura, A.Shichijo, H.Tamura, N.Taniya, T.Yamamoto, K.Yokota, S.Kato, Y.Sato, T.Takahashi, H.Noumi, T.Motoba, E.Hiyama, I.Albayrak, O.Ates, C.Chen, M.Christy, C.Keppel, M.Kohl, Y.Li, A.Liyanage, L.Tang, T.Walton, Z.Ye, L.Yuan, L.Zhu, P.Baturin, W.Boeglin, S.Dhamija, P.Markowitz, B.Raue, J.Reinhold, Ed.V.Hungerford, R.Ent, H.Fenker, D.Gaskell, T.Horn, M.Jones, G.Smith, W.Vulcan, S.A.Wood, C.Johnston, N.Simicevic, S.Wells, C.Samanta, B.Hu, J.Shen, W.Wang, X.Zhang, Y.Zhang, J.Feng, Y.Fu, J.Zhou, S.Zhou, Y.Jiang, H.Lu, X.Yan, Y.Ye, L.Gan, A.Ahmidouch, S.Danagoulian, A.Gasparian, M.Elaasar, F.R.Wesselmann, A.Asaturyan, A.Margaryan, A.Mkrtchyan, H.Mkrtchyan, V.Tadevosyan, D.Androic, M.Furic, T.Petkovic, T.Seva, G.Niculescu, I.Niculescu, V.M.Rodriguez Lopez, E.Cisbani, F.Cusanno, F.Garibaldi, G.M.Uuciuoli, R.De Leo, S.Maronne

Hypernuclear spectroscopy with electron beam at JLab HALL C

NUCLEAR REACTIONS 7Li, 12C, 28Si(E, EK+)7He/12B/28Al, E=1.2 GeV; measured reaction products; deduced hypernuclear spectroscopy, missing mass spectrum.

doi: 10.1142/S0218301310016983
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2010YE09      Nucl.Phys. A834, 454c (2010)

Y.Ye, Z.Cao, D.Jiang, T.Zheng, H.Hua, Y.Ge, X.Li, J.Lou, J.Xiao, Q.Li, L.Lv, R.Qiao, H.You, R.Chen, H.Sakurai, H.Otsu, Z.Li, M.Nishimura, S.Sakaguchi, H.Baba, Y.Togano, K.Yoneda, C.Li, S.Wang, H.Wang, K.Li, H.Xu, Z.Hu, J.Wang, L.Duan, X.Zhang, R.Chen, Z.Guo, Z.Sun, X.Lei, Z.Xu, T.Nakamura, Y.Nakayama, Y.Kondo, S.Deguchi, Y.Satou, K.H.Tshoo

Probing the Structure of Unstable Nuclei Through the Recoiled Proton Tagged Knockout Reaction

NUCLEAR REACTIONS 1H, C(8He, X), E=82.5 MeV/nucleon; 1H, C(6He, X), E=65 MeV/nucleon; measured Ep, Ip(θ), E(fragment), I(fragment)(θ), Eα, Iα(θ), pα-coin, p(fragment)-coin, angular correlations; deduced reaction mechanism features. Secondary radioactive beams.

doi: 10.1016/j.nuclphysa.2010.01.062
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2006YE03      Int.J.Mod.Phys. E15, 1465 (2006)

Y.Ye, D.Pang, C.Zhang, D.Jiang, T.Zheng, Z.Li, X.Li, Y.Ge, H.Hua, C.Wu, C.Li, J.Lou

Study of light unstable nuclei via direct nuclear reactions

NUCLEAR REACTIONS 9Be(6He, 6He), (6He, 5He), (6He, α), E=25 MeV/nucleon; measured recoil spectra, σ(θ); deduced optical model parameters. 3H(17Ne, 16F), E=5 MeV/nucleon; calculated σ(θ).

doi: 10.1142/S0218301306005058
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2005WU01      J.Phys.(London) G31, 39 (2005)

C.Wu, Y.Yamaguchi, A.Ozawa, I.Tanihata, D.Jiang, H.Hua, T.Zheng, Z.Li, Y.Ye

Neutron removal reactions of 17C

NUCLEAR REACTIONS 12C(17C, 16CX), (17C, 15CX), (17C, 14CX), E=79 MeV/nucleon; measured neutron-removal σ. 17C deduced core-plus-nucleon structure. Glauber model analysis.

doi: 10.1088/0954-3899/31/1/004
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetE1926.


1998MI09      Phys.Rev. C57, 1756 (1998)

C.A.Miller, K.H.Hicks, R.Abegg, M.Ahmad, N.S.Chant, D.Frekers, P.W.Green, L.G.Greeniaus, D.A.Hutcheon, P.Kitching, D.J.Mack, W.J.McDonald, W.C.Olsen, R.Schubank, P.G.Roos, Y.Ye

Spin-Dependent Scattering of Deeply Bound Nucleons

NUCLEAR REACTIONS 16O(polarized p, 2p), E=504 MeV; measured σ(θ), A(y)(θ, E), spin transfer observables; deduced NN interaction medium effects. DWIA analysis.

doi: 10.1103/PhysRevC.57.1756
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1997YE03      Phys.Rev. D55, 5641 (1997)

Y.Ye, S.Wang, Y.Zhong, C.Xiao, X.Zhou, J.Zhang

Fractal Structure of Multiparticles Produced in p-p Collisions at 400 GeV/c

NUCLEAR REACTIONS 1H(p, X), E at 400 GeV/c; analyzed charged fragments distributions; deduced fractal behaviour.

doi: 10.1103/PhysRevD.55.5641
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1996YE02      Phys.Lett. 382B, 196 (1996)

Y.Ye, S.Wang, X.Zhou, C.Xiao, J.Zhang, D.Zhu

Forward-Backward Correlation and Cluster Size in p-p Collisions at 400 GeV/c

NUCLEAR REACTIONS 1H(p, X), E at 400 GeV/c; measured charged particles pseudorapidity distributions; deduced considerable leading particle effect on cluster size.

doi: 10.1016/0370-2693(96)00559-X
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1995WA09      Phys.Lett. 344B, 447 (1995)

S.Wang, J.Zhang, C.Xiao, Y.Ye, Z.Li, T.Shen

Fractal Analysis of pp Interactions at 400 GeV/c

NUCLEAR REACTIONS 1H(p, X), E at 400 GeV/c; measured charged particle pseudorapidity distributions; deduced multi-fractal features.

doi: 10.1016/0370-2693(94)01509-B
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1995WA27      Phys.Lett. 359B, 397 (1995)

S.Wang, Z.Li, J.Zhang, Y.Ye, C.Xiao

Factorial Correlators and Cumulant Correlators in pp Collisions at 400 GeV/c

NUCLEAR REACTIONS 1H(p, X), E at 400 GeV/c; analyzed factorial, cumulant correlators.

doi: 10.1016/0370-2693(95)01055-U
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1995WA34      Z.Phys. C68, 415 (1995)

S.Wang, J.Zhang, C.Xiao, Y.Ye

Factorial Cumulant Moments and Correlation Integrals in pp Collisions at 400 GeV/c

NUCLEAR REACTIONS 1H(p, X), E at 400 GeV/c; measured charged particles pseudorapidity distributions; deduced factorial cumulant moments, correlation integrals related features.

doi: 10.1007/BF01620715
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1994WA04      Phys.Lett. 321B, 431 (1994)

S.Wang, J.Zhang, Y.Ye, C.Xiao, Y.Zhong

Factorial Cumulant Moments and Correlations in pp Collisions at 400 GeV/c

NUCLEAR REACTIONS 1H(p, X), E at 400 GeV/c; measured charged particle pseudorapidity distributions; deduced short-range dynamical two-particle correlations role.

doi: 10.1016/0370-2693(94)90271-2
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1994WA33      Phys.Rev. D49, 5785 (1994)

S.Wang, J.Zhang, Y.Ye, C.Xiao, Y.Zhong

Intermittency Exponents in pp Collisions at 400 GeV/c

NUCLEAR REACTIONS 1H(p, X), E at 400 GeV/c; measured charged particle pseudorapidity distribution; deduced intermittency exponents behavior.

doi: 10.1103/PhysRevD.49.5785
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1993HU12      Chin.Phys.Lett. 10, 205 (1993)

X.Huang, X.Lu, C.Jin, C.Zhou, Y.Ye, Z.Xia, H.Liu, D.Jiang

Stopping Power of Au and Ag for He Ions

NUCLEAR REACTIONS 197Au, Ag(α, α), E=0.45-5 MeV; measured Rutherford backscattering spectra; deduced stopping power in Au, Ag films.

doi: 10.1088/0256-307X/10/4/004
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1991AB09      Nucl.Instrum.Methods Phys.Res. A306, 432 (1991)

R.Abegg, M.Ahmad, D.Bandyopadhyay, J.Birchall, K.Chantziantoniou, C.A.Davis, N.E.Davison, P.P.J.Delheij, P.W.Green, L.G.Greeniaus, D.C.Healey, C.Lapointe, W.J.McDOnald, C.A.Miller, G.A.Moss, S.A.Page, W.D.Ramsay, N.L.Rodning, G.Roy, W.T.H.van Oers, G.D.Wait, J.W.Watson, Y.Ye

Calibration of the Polarization of a Frozen Spin Target

NUCLEAR REACTIONS 1H(p, p), E=468, 501 MeV; measured asymmetry; deduced target polarization. Frozen spin target.

doi: 10.1016/0168-9002(91)90036-P
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1991HU08      Nucl.Phys. A535, 618 (1991)

D.A.Hutcheon, E.Korkmaz, G.A.Moss, R.Abegg, N.E.Davison, G.W.R.Edwards, L.G.Greeniaus, D.Mack, C.A.Miller, W.C.Olsen, I.J.Van Heerden, Y.Ye

Measurements of NN → dπ Very Near Threshold (I). The np → dπ0 Cross Section

NUCLEAR REACTIONS 1H(n, π0), E=275-291 MeV; measured σ(E, θ). Liquid hydrogen targets.

doi: 10.1016/0375-9474(91)90479-P
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1991YE02      Chin.J.Nucl.Phys. 13, No 2, 157 (1991)

Y.Ye, V.S.Nguyen

Glauber Approximation for Elastic Scattering of Polarized Deuteron at Intermediate Energies

NUCLEAR REACTIONS 40Ca(polarized d, d), E=700 MeV; 58Ni(polarized d, d), E=400, 700 MeV; calculated σ(θ), vector, tensor analyzing power vs θ. Glauber model, optical limit.


1990HU01      Phys.Rev.Lett. 64, 176 (1990)

D.A.Hutcheon, E.Korkmaz, G.A.Moss, R.Abegg, N.E.Davison, G.W.R.Edwards, L.G.Greeniaus, D.Mack, C.A.Miller, W.C.Olsen, I.J.van Heerden, Y.Ye

Measurement of np → dπ0 Cross Sections Very Near Threshold

NUCLEAR REACTIONS 1H(n, π0), E=275-290 MeV; measured σ. Model comparison.

doi: 10.1103/PhysRevLett.64.176
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1990MI27      J.Phys.(Paris), Colloq.C-6, 595 (1990)

C.A.Miller, R.Abegg, D.Frekers, P.W.Green, K.Hicks, D.A.Hutcheon, M.Ahmad, L.G.Greeniaus, P.Kitching, D.Mack, W.J.McDonald, W.C.Olsen, Y.Ye, N.S.Chant, R.Schubank

Medium Effects on Knockout of Deeply Bound Nucleons

NUCLEAR REACTIONS 16O(polarized p, 2p), E=500 MeV; measured analyzing power, spin transfer parameter vs θ. DWIA analysis, pp-coin method.


1989AB11      Phys.Rev. C40, 2406 (1989)

R.Abegg, M.Ahmad, D.Bandyopadhyay, J.Birchall, E.B.Cairns, K.Chantziantoniou, H.Coombes, C.A.Davis, N.E.Davison, P.P.J.Delheij, P.W.Green, L.G.Greeniaus, H.P.Gubler, D.C.Healey, C.Lapointe, W.P.Lee, W.J.McDonald, C.A.Miller, G.A.Moss, S.A.Page, G.R.Plattner, P.R.Poffenberger, W.D.Ramsay, N.L.Rodning, G.Roy, J.Soukup, J.P.Svenne, R.R.Tkachuk, W.T.H.van Oers, G.D.Wait, J.W.Watson, Y.Ye, Y.P.Zhang

np Elastic Scattering Analyzing Power Characteristics at Intermediate Energies

NUCLEAR REACTIONS 1H(polarized n, n), E=220-477 MeV; measured polarization observables; deduced analyzing power. Other data input.

doi: 10.1103/PhysRevC.40.2406
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1989BA61      Phys.Rev. C40, 2684 (1989)

D.Bandyopadhyay, R.Abegg, M.Ahmad, J.Birchall, K.Chantziantoniou, C.A.Davis, N.E.Davison, P.P.J.Delheij, P.W.Green, L.G.Greeniaus, D.C.Healey, C.Lapointe, W.J.McDonald, C.A.Miller, G.A.Moss, S.A.Page, W.D.Ramsay, N.L.Rodning, G.Roy, W.T.H.van Oers, G.D.Wait, J.W.Watson, Y.Ye

Spin Correlation Parameter and Analyzing Power in n-p Elastic Scattering at Intermediate Energies

NUCLEAR REACTIONS 1H(polarized n, n), E=220, 325, 425 MeV; measured analyzing power, spin correlation parameter. Bonn potential analysis. Frozen spin target.

doi: 10.1103/PhysRevC.40.2684
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset13178.


1987NG01      Nucl.Phys. A464, 717 (1987)

Nguyen Van Sen, Ye Yanlin, J.Arvieux, G.Gaillard, B.Bonin, A.Boudard, G.Bruge, J.C.Lugol, T.Hasegawa, F.Soga, L.E.Antonuk, J.M.Cameron, S.T.Lam, G.C.Neilson, G.Roy, D.M.Sheppard, R.Babinet

Elastic Scattering of Polarized Deuterons from 16O at 200, 400 and 700 MeV

NUCLEAR REACTIONS 16O(polarized d, d), E=200, 400, 700 MeV; measured σ(θ), analyzing power vs θ; deduced optical model parameters, total reaction σ. Glauber model. Energy-loss spectrometer, water target.

doi: 10.1016/0375-9474(87)90372-1
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF0850.


1986KE18      Phys.Lett. 181B, 28 (1986)

C.Kerboul, A.Boudard, L.Antonuk, J.Arvieux, J.Berger, R.Bertini, M.Boivin, J.M.Durand, A.Stetz, J.Tinsley, J.Yonnet, Nguyen Van Sen, Ye Yanlin, B.Mayer, J.Cameron, C.Lapointe, D.M.Sheppard, J.F.Germond, C.Wilkin

Deuteron Tensor Analyzing Power for the Collinear d(pol)p → 3Heπ0 Reaction at Intermediate Energies

NUCLEAR REACTIONS, MECPD 1H(polarized d, π0), E=500-2200 MeV; measured residual nucleus σ(θ), tensor analyzing power vs E. 3He deduced nucleon pair pion capture isospin dependence.

doi: 10.1016/0370-2693(86)91248-7
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1985NG01      Phys.Lett. 156B, 185 (1985)

Nguyen Van Sen, J.Arvieux, Ye Yanlin, G.Gaillard, B.Bonin, A.Boudard, G.Bruce, J.C.Lugol, R.Babinet, T.Hasegawa, F.Soga, J.M.Cameron, G.C.Neilson, D.M.Sheppard

Elastic Scattering of Polarized Deuterons from 40Ca and 58Ni at Intermediate Energies

NUCLEAR REACTIONS 58Ni(polarized d, d), E=200, 400, 700 MeV; 40Ca(polarized d, d), E=700 MeV; measured σ(θ), analyzing power vs θ; deduced optical model parameters, reaction σ(E) for 58Ni.

doi: 10.1016/0370-2693(85)91506-0
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0240.


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