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NSR database version of April 11, 2024.

Search: Author = J.Yu

Found 38 matches.

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2024WA08      Nucl.Phys. A1043, 122834 (2024)

M.Z.Wang, D.Wu, H.Y.Lan, J.Y.Zhang, J.X.Liu, H.G.Lu, J.F.Lv, X.Z.Wu, H.Zhang, J.Cai, Q.Y.Ma, Y.H.Xia, Z.N.Wang, Z.Y.Yang, X.L.Xu, Y.X.Geng, Y.Y.Zhao, H.R.Wang, F.L.Liu, J.Q.Yu, K.J.Luo, W.Luo, X.Q.Yan

Cross section measurements of 27Al(γ, x)24Na reactions as monitors for laser-driven bremsstrahlung γ-ray

NUCLEAR REACTIONS 27Al(γ, X)24Na, E ∼ 78, 103, 135; measured reaction products, Eγ, Iγ; deduced γ-ray energies, σ. Comparison with TALYS 1.9 calculations, experimental data. The 200 TW laser facility in the Compact Laser Plasma Accelerator (CLAPA) Laboratory, Peking University.

doi: 10.1016/j.nuclphysa.2024.122834
Citations: PlumX Metrics


2021LI55      Phys.Rev. C 104, 044001 (2021)

C.Li, J.Yu, R.Peng, S.Lyu, B.Long

Trapped two-nucleon system in energy-dependent effective field theory

doi: 10.1103/PhysRevC.104.044001
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2015AN15      Phys.Rev. C 92, 045802 (2015)

Z.-D.An, Z.-P.Chen, Y.-G.Ma, J.-K.Yu, Y.-Y.Sun, G.-T.Fan, Y.-J.Li, H.-H.Xu, B.-S.Huang, K.Wang

Astrophysical S factor of the 12C(α, γ)16O reaction calculated with reduced R-matrix theory

NUCLEAR REACTIONS 12C(α, γ)16O, E(cm)<10 MeV; 12C(α, α), E(cm)=1.1-6.2 MeV; analyzed σ(E, θ) data using reduced R-matrix theory based on the classical R-matrix theory of Lane and Thomas; deduced accurate, and self-consistent astrophysical S factor. 16O; deduced particle partial widths for levels, and radiation widths for the γ-ray transitions from R-matrix fits. Comparison of widths to literature values.

doi: 10.1103/PhysRevC.92.045802
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2014MA31      Phys.Rev. C 89, 057602 (2014)

C.W.Ma, J.Yu, X.M.Bai, Y.L.Zhang, H.L.Wei, S.S.Wang

Isobaric yield ratio difference and neutron density difference in calcium isotopes

NUCLEAR REACTIONS 40Ca(38Ca, X), (42Ca, X), (44Ca, X), (46Ca, X), (48Ca, X), (50Ca, X), (52Ca, X), E=80 MeV/nucleon; 9Be(40Ca, X), (48Ca, X), E=140 MeV/nucleon; calculated isobaric yield ratio difference, ratio of chemical potential difference between neutrons and protons to temperature (IB-(Δμ21/T)) for prefragments and final fragments. Modified statistical abrasion-ablation (SAA) model, assuming Fermi type neutron density distribution. Comparison with experimental data.

doi: 10.1103/PhysRevC.89.057602
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2014MA75      Eur.Phys.J. A 50, 139 (2014)

C.-W.Ma, X.-M.Bai, J.Yu, H.-L.Wei

Neutron density distributions of neutron-rich nuclei studied with the isobaric yield ratio difference

doi: 10.1140/epja/i2014-14139-1
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2012BA25      Phys.Scr. 85, 065204 (2012)

S.I.Bastrukov, I.V.Molodtsova, J.W.Yu, R.X.Xu

On Alfven's hypothesis about nuclear hydromagnetic resonances

doi: 10.1088/0031-8949/85/06/065204
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2011KO11      Phys.Rev.Lett. 106, 122301 (2011)

K.Kovarik, I.Schienbein, F.I.Olness, J.Y.Yu, C.Keppel, J.G.Morfin, J.F.Owens, T.Stavreva

Nuclear Corrections in Neutrino-Nucleus Deep Inelastic Scattering and their Compatibility with Global Nuclear Parton-Distribution-Function Analyses

doi: 10.1103/PhysRevLett.106.122301
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2005PA03      Nucl.Phys. B(Proc.Supp.) S139, 119 (2005)

E.A.Paschos, I.Schienbein, J.-Y.Yu

Pion Rescattering in Nuclei

doi: 10.1016/j.nuclphysbps.2004.11.241
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2005PA04      Nucl.Phys. B(Proc.Supp.) S139, 125 (2005)

E.A.Paschos, M.Sakuda, I.Schienbein, J.Y.Yu

Comparison of a new Δ resonance production model with electron and neutrino data

doi: 10.1016/j.nuclphysbps.2004.11.205
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2003DO11      Int.J.Mod.Phys. E12, 555 (2003)

S.-H.Dong, X.-Y.Gu, Z.-Q.Ma, J.Yu

The Klein-Gordon equation with a Coulomb potential in D dimensions

doi: 10.1142/S0218301303001387
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2003DU23      Phys.Rev. C 68, 064603 (2003)

D.Dutta, D.van Westrum, D.Abbott, A.Ahmidouch, Ts.A.Amatuoni, C.Armstrong, J.Arrington, K.A.Assamagan, K.Bailey, O.K.Baker, S.Barrow, K.Beard, D.Beatty, S.Beedoe, E.Beise, E.Belz, C.Bochna, P.E.Bosted, H.Breuer, E.E.W.Bruins, R.Carlini, J.Cha, N.Chant, C.Cothran, W.J.Cummings, S.Danagoulian, D.Day, D.DeSchepper, J.-E.Ducret, F.Duncan, J.Dunne, T.Eden, R.Ent, H.T.Fortune, V.Frolov, D.F.Geesaman, H.Gao, R.Gilman, P.Gueye, J.O.Hansen, W.Hinton, R.J.Holt, C.Jackson, H.E.Jackson, C.Jones, S.Kaufmann, J.J.Kelly, C.Keppel, M.Khandaker, W.Kim, E.Kinney, A.Klein, D.Koltenuk, L.Kramer, W.Lorenzon, A.Lung, K.McFarlane, D.J.Mack, R.Madey, P.Markowitz, J.Martin, A.Mateos, D.Meekins, M.A.Miller, R.Milner, J.Mitchell, R.Mohring, H.Mkrtchyan, A.M.Nathan, G.Niculescu, I.Niculescu, T.G.O'Neill, D.Potterveld, J.W.Price, J.Reinhold, C.Salgado, J.P.Schiffer, R.E.Segel, P.Stoler, R.Suleiman, V.Tadevosyan, L.Tang, B.Terburg, T.P.Welch, C.Williamson, S.Wood, C.Yan, J.-C.Yang, J.Yu, B.Zeidman, W.Zhao, B.Zihlmann

Quasielastic (e, e'p) reaction on 12C, 56Fe, and 197Au

NUCLEAR REACTIONS 12C, 56Fe, 197Au(e, e'p), E=0.845-3.345 GeV; measured missing energy, momentum distributions; deduced spectral functions. Comparison with model predictions.

doi: 10.1103/PhysRevC.68.064603
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2002MC09      Nucl.Phys. B(Proc.Supp.) S112, 226 (2002)

K.S.McFarland, G.P.Zeller, T.Adams, A.Alton, S.Avvakumov, L.de Barbaro, P.de Barbaro, R.H.Bernstein, A.Bodek, T.Bolton, J.Brau, D.Buchholz, H.Budd, L.Bugel, J.Conrad, R.B.Drucker, B.T.Fleming, R.Frey, J.A.Formaggio, J.Goldman, M.Goncharov, D.A.Harris, R.A.Johnson, J.H.Kim, S.Koutsoliotas, M.J.Lamm, W.Marsh, D.Mason, J.McDonald, C.McNulty, D.Naples, P.Nienaber, V.Radescu, A.Romosan, W.K.Sakumoto, H.Schellman, M.H.Shaevitz, P.Spentzouris, E.G.Stern, N.Suwonjandee, M.Tzanov, M.Vakili, A.Vaitaitis, U.K.Yang, J.Yu, E.D.Zimmerman

Nuclear Effects and the NuTeV sin2θw Measurement

NUCLEAR REACTIONS Fe(ν, X), (ν-bar, X), E not given; measured ratio of neutral to charged-current σ; deduced electroweak parameter, possible nuclear effects on parton distribution functions. Comparison with model predictions.

doi: 10.1016/S0920-5632(02)01777-2
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2002ZE05      Phys.Rev. D65, 111103 (2002)

G.P.Zeller, K.S.McFarland, T.Adams, A.Alton, S.Avvakumov, L.de Barbaro, P.de Barbaro, R.H.Bernstein, A.Bodek, T.Bolton, J.Brau, D.Buchholz, H.Budd, L.Bugel, J.Conrad, R.B.Drucker, B.T.Fleming, R.Frey, J.A.Formaggio, J.Goldman, M.Goncharov, D.A.Harris, R.A.Johnson, J.H.Kim, S.Koutsoliotas, M.J.Lamm, W.Marsh, D.Mason, J.McDonald, C.McNulty, D.Naples, P.Nienaber, A.Romosan, W.K.Sakumoto, H.Schellman, M.H.Shaevitz, P.Spentzouris, E.G.Stern, N.Suwonjandee, M.Tzanov, M.Vakili, A.Vaitaitis, U.K.Yang, J.Yu, E.D.Zimmerman

Effect of Asymmetric Strange Seas and Isospin-Violating Parton Distribution Functions on sin2θW Measured in the NuTeV Experiment

doi: 10.1103/PhysRevD.65.111103
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2001AL02      Phys.Rev. D63, 012001 (2001)

A.Alton, T.Adams, T.Bolton, J.Goldman, M.Goncharov, D.Naples, R.A.Johnson, M.Vakili, N.Suwonjandee, J.Conrad, B.T.Fleming, J.Formaggio, J.H.Kim, S.Koutsoliotas, C.McNulty, A.Romosan, M.H.Shaevitz, P.Spentzouris, E.G.Stern, A.Vaitaitis, E.D.Zimmerman, R.H.Bernstein, L.Bugel, M.J.Lamm, W.Marsh, P.Nienaber, J.Yu, L.de Barbaro, D.Buchholz, H.Schellman, G.P.Zeller, J.Brau, R.B.Drucker, R.Frey, D.Mason, S.Avvakumov, P.de Barbaro, A.Bodek, H.Budd, D.A.Harris, K.S.McFarland, W.K.Sakumoto, U.K.Yang

Search for Light-to-Heavy Quark Flavor Changing Neutral Currents in νμN and (ν-bar)μN Scattering at the Fermilab Tevatron

NUCLEAR REACTIONS Fe(ν, μ+X), (ν-bar, μ-X), E not given; measured muon spectra, charged current spectra; deduced flavor mixing strength limits, no flavor-changing neutral currents. Sign-selected beams.

doi: 10.1103/PhysRevD.63.012001
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2001AL24      Phys.Rev. D64, 012002 (2001)

A.Alton, T.Adams, T.Bolton, J.Goldman, M.Goncharov, R.A.Johnson, N.Suwonjandee, M.Vakili, J.Conrad, B.T.Fleming, J.Formaggio, J.H.Kim, S.Koutsoliotas, C.McNulty, A.Romosan, M.H.Shaevitz, P.Spentzouris, E.G.Stern, A.Vaitaitis, E.D.Zimmerman, R.H.Bernstein, L.Bugel, M.J.Lamm, W.Marsh, P.Nienaber, J.Yu, L.de Barbaro, D.Buchholz, H.Schellman, G.P.Zeller, J.Brau, R.B.Drucker, R.Frey, D.Mason, J.McDonald, D.Naples, S.Avvakumov, P.de Barbaro, A.Bodek, H.Budd, D.A.Harris, K.S.McFarland, W.K.Sakumoto, U.K.Yang

Observation of Neutral Current Charm Production in νμ Fe Scattering at the Fermilab Tevatron

NUCLEAR REACTIONS Fe(ν, X), E ≈ 154 GeV; 1n, 1H(p, X), E(cm)=38.8 GeV; measured charm production σ.

doi: 10.1103/PhysRevD.64.012002
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2001GO43      Phys.Rev. D64, 112006 (2001)

M.Goncharov, T.Adams, A.Alton, T.Bolton, J.Goldman, P.Spentzouris, J.Conrad, B.T.Fleming, J.Formaggio, S.Koutsoliotas, J.H.Kim, C.McNulty, A.Romosan, M.H.Shaevitz, E.G.Stern, A.Vaitaitis, E.D.Zimmerman, R.A.Johnson, M.Vakili, N.Suwonjandee, R.H.Bernstein, L.Bugel, M.J.Lamm, W.Marsh, P.Nienaber, J.Yu, L.de Barbaro, D.Buchholz, H.Schellman, G.P.Zeller, J.Brau, R.B.Drucker, R.Frey, D.Mason, J.E.McDonald, D.Naples, M.Tzanov, S.Avvakumov, P.de Barbaro, A.Bodek, H.Budd, D.A.Harris, K.S.McFarland, W.K.Sakumoto, U.K.Yang

Precise Measurement of Dimuon Production Cross Sections in νμFe and (ν-bar)mFe Deep Inelastic Scattering at the Fermilab Tevatron

NUCLEAR REACTIONS Fe(ν, μ+μ-X), (ν-bar, μ+μ-X), E ≈ 80-270 GeV; measured dimuon production σ. Comparison with previous results.

doi: 10.1103/PhysRevD.64.112006
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2000AD02      Phys.Rev. D61, 092001 (2000)

T.Adams, A.Alton, T.Bolton, J.Goldman, M.Goncharov, D.Naples, R.A.Johnson, M.Vakili, V.Wu, J.Conrad, B.T.Fleming, J.Formaggio, S.Koutsoliotas, J.H.Kim, C.McNulty, A.Romosan, M.H.Shaevitz, P.Spentzouris, E.G.Stern, A.Vaitaitis, E.D.Zimmerman, R.H.Bernstein, L.Bugel, M.J.Lamm, W.Marsh, P.Nienaber, J.Yu, L.de Barbaro, D.Buchholz, H.Schellman, G.P.Zeller, J.Brau, R.B.Drucker, R.Frey, D.Mason, S.Avvakumov, P.de Barbaro, A.Bodek, H.Budd, D.A.Harris, K.S.McFarland, W.K.Sakumoto, U.K.Yang

Evidence for Diffractive Charm Production in νμFe and (ν-bar)μFe Scattering at the Fermilab Tevatron

NUCLEAR REACTIONS Fe(ν, μ-X), (ν-bar, μ+X), E not given; measured muon spectra, two-muon invariant mass; deduced charm production features, no neutral-current J/ψ production. Comparison with thoery.

doi: 10.1103/PhysRevD.61.092001
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2000DU12      Phys.Rev. C61, 061602 (2000)

D.Dutta, D.van Westrum, D.Abbott, A.Ahmidouch, Ts.A.Amatuni, C.Armstrong, J.Arrington, K.A.Assamagan, K.Bailey, O.K.Baker, S.Barrow, K.Beard, D.Beatty, S.Beedoe, E.Beise, J.E.Belz, C.Bochna, P.E.Bosted, H.Breuer, E.E.W.Bruins, R.Carlini, J.Cha, N.Chant, R.E.Chrien, C.Cothran, W.J.Cummings, S.Danagoulian, D.Day, D.DeSchepper, J.-E.Ducret, F.Duncan, J.Dunne, T.Eden, R.Ent, H.T.Fortune, V.Frolov, D.F.Geesaman, H.Gao, R.Gilman, P.Gueye, J.O.Hansen, W.Hinton, R.J.Holt, C.Jackson, H.E.Jackson, C.Jones, S.Kaufman, J.J.Kelly, C.Keppel, M.Khandaker, W.Kim, E.Kinney, A.Klein, D.Koltenuk, L.Kramer, W.Lorenzon, K.McFarlane, D.J.Mack, R.Madey, P.Markowitz, J.Martin, A.Mateos, D.Meekins, E.Meier, M.A.Miller, R.Milner, J.Mitchell, R.Mohring, H.Mkrtchyan, A.M.Nathan, G.Niculescu, I.Niculescu, T.G.O'Neill, D.Potterveld, J.W.Price, J.Reinhold, C.Salgado, J.P.Schiffer, R.E.Segel, P.Stoler, R.Suleiman, R.Sawafta, R.J.Sutter, V.Tadevosyan, L.Tang, B.Terburg, T.P.Welch, C.Williamson, S.Wood, C.Yan, J.-C.Yang, J.Yu, B.Zeidman, W.Zhao, B.Zihlmann

Separated Spectral Functions for the Quasifree 12C(e, e'p) Reaction

NUCLEAR REACTIONS 12C(e, e'p), E=0.845-3.245 GeV; measured transverse and longitudinal spectral functions vs proton energy; deduced momentum transfer dependence, role of multinucleon processes.

doi: 10.1103/PhysRevC.61.061602
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2000FO05      Phys.Rev.Lett. 84, 4043 (2000)

J.A.Formaggio, E.D.Zimmerman, T.Adams, A.Alton, S.Avvakumov, L.de Barbaro, P.de Barbaro, R.H.Bernstein, A.Bodek, T.Bolton, J.Brau, D.Buchholz, H.Budd, L.Bugel, S.Case, J.M.Conrad, R.B.Drucker, B.T.Fleming, R.Frey, J.Goldman, M.Goncharov, D.A.Harris, R.A.Johnson, J.H.Kim, S.Koutsoliotas, M.J.Lamm, W.Marsh, D.Mason, K.S.McFarland, C.McNulty, D.Naples, P.Nienaber, A.Romosan, W.K.Sakumoto, H.M.Schellman, M.H.Shaevitz, P.Spentzouris, E.G.Stern, M.Vakili, A.Vaitaitis, V.Wu, U.K.Yang, J.Yu, G.P.Zeller

Search for a 33.9 MeV/c2 Neutral Particle in Pion Decay

doi: 10.1103/PhysRevLett.84.4043
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2000TA05      Nucl.Phys. A663-664, 344c (2000)

B.H.Tamminga, T.Adams, A.Alton, C.G.Arroyo, S.Avvakumov, L.de Barbaro, P.de Barbaro, A.O.Bazarko, R.H.Bernstein, A.Bodek, T.Bolton, J.Brau, D.Buchholz, H.Budd, L.Bugel, J.Conrad, R.B.Drucker, J.A.Formaggio, R.Frey, J.Goldman, M.Goncharov, D.A.Harris, R.A.Johnson, J.H.Kim, B.J.King, T.Kinnel, S.Koutsoliotas, M.J.Lamm, W.Marsh, D.Mason, K.S.McFarland, C.McNulty, S.R.Mishra, D.Naples, P.Nienaber, A.Romosan, W.K.Sakumoto, H.Schellman, F.J.Sciulli, W.G.Seligman, M.H.Shaevitz, W.H.Smith, P.Spentzouris, E.G.Stern, M.Vakili, A.Vaitaitis, V.Wu, U.K.Yang, J.Yu, G.P.Zeller, E.D.Zimmerman

Low-Q2 Low-x Structure Function Analysis of CCFR Data for F2

doi: 10.1016/S0375-9474(99)00613-2
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2000VA01      Phys.Rev. D61, 052003 (2000)

M.Vakili, C.G.Arroyo, P.Auchincloss, L.de Barbaro, P.de Barbaro, A.O.Bazarko, R.H.Bernstein, A.Bodek, T.Bolton, H.Budd, J.Conrad, D.A.Harris, R.A.Johnson, J.H.Kim, B.J.King, T.Kinnel, G.Koizumi, S.Koutsoliotas, M.J.Lamm, W.C.Lefmann, W.Marsh, K.S.McFarland, C.McNulty, S.R.Mishra, D.Naples, P.Nienaber, M.J.Oreglia, L.Perera, P.Z.Quintas, A.Romosan, W.K.Sakumoto, B.A.Schumm, F.J.Sciulli, W.G.Seligman, M.H.Shaevitz, W.H.Smith, P.Spentzouris, R.Steiner, E.G.Stern, U.K.Yang, J.Yu

Nuclear Structure Functions in the Large-x Large-Q2 Kinematic Region in Neutrino Deep Inelastic Scattering

NUCLEAR REACTIONS Fe(ν, μ), E not given; analyzed Bjorken x distributions; deduced nuclear effects at large x.

doi: 10.1103/PhysRevD.61.052003
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1998AB18      Phys.Rev.Lett. 80, 5072 (1998)

D.Abbott, A.Ahmidouch, Ts.A.Amatuni, C.Armstrong, J.Arrington, K.A.Assamagan, K.Bailey, O.K.Baker, S.Barrow, K.Beard, D.Beatty, S.Beedoe, E.Beise, J.E.Belz, C.Bochna, H.Breuer, E.E.W.Bruins, R.Carlini, J.Cha, N.Chant, C.Cothran, W.J.Cummings, S.Danagoulian, D.Day, D.DeSchepper, J.-E.Ducret, F.Duncan, J.Dunne, D.Dutta, T.Eden, R.Ent, H.T.Fortune, V.Frolov, D.F.Geesaman, H.Gao, R.Gilman, P.Gueye, J.O.Hansen, W.Hinton, R.J.Holt, C.Jackson, H.E.Jackson, C.E.Jones, S.Kaufman, J.J.Kelly, C.Keppel, M.Khandaker, W.Kim, E.Kinney, A.Klein, D.Koltenuk, L.Kramer, W.Lorenzon, K.McFarlane, D.J.Mack, R.Madey, P.Markowitz, J.Martin, A.Mateos, D.Meekins, M.A.Miller, R.Milner, J.Mitchell, R.Mohring, H.Mkrtchyan, A.M.Nathan, G.Niculescu, I.Niculescu, T.G.O'Neill, D.Potterveld, J.W.Price, J.Reinhold, C.Salgado, J.P.Schiffer, R.E.Segel, P.Stoler, R.Suleiman, V.Tadevosyan, L.Tang, B.Terburg, D.van Westrum, P.Welch, C.Williamson, S.Wood, C.Yan, J.-C.Yang, J.Yu, B.Zeidman, W.Zhao, B.Zihlmann

Quasifree (e, e'p) Reactions and Proton Propagation in Nuclei

NUCLEAR REACTIONS C, Fe, 197Au(e, e'p), E=2.45, 3.25 GeV; measured σ(θ), σ(Q2); deduced nuclear medium effects.

doi: 10.1103/PhysRevLett.80.5072
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1998KI16      Phys.Rev.Lett. 81, 3595 (1998)

J.H.Kim, D.A.Harris, C.G.Arroyo, L.de Barbaro, P.de Barbaro, A.O.Bazarko, R.H.Bernstein, A.Bodek, T.Bolton, H.Budd, J.Conrad, R.A.Johnson, B.J.King, T.Kinnel, M.J.Lamm, W.C.Lefmann, W.Marsh, K.S.McFarland, C.McNulty, S.R.Mishra, D.Naples, P.Z.Quintas, A.Romosan, W.K.Sakumoto, H.Schellman, F.J.Sciulli, W.G.Seligman, M.H.Shaevitz, W.H.Smith, P.Spentzouris, E.G.Stern, M.Vakili, U.K.Yang, J.Yu

Measurement of αs(Q2) from the Gross-Llewellyn Smith Sum Rule

NUCLEAR REACTIONS Fe(ν, X), E not given; analyzed data; deduced strong coupling constant. Gross-Llewellyn Smith sum rule, deep-inelastic scattering.

doi: 10.1103/PhysRevLett.81.3595
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1997SE08      Phys.Rev.Lett. 79, 1213 (1997)

W.G.Seligman, C.G.Arroyo, L.de Barbaro, P.de Barbaro, A.O.Bazarko, R.H.Bernstein, A.Bodek, T.Bolton, H.Budd, J.Conrad, D.A.Harris, R.A.Johnson, J.H.Kim, B.J.King, T.Kinnel, M.J.Lamm, W.C.Lefmann, W.Marsh, K.S.McFarland, C.McNulty, S.R.Mishra, D.Naples, P.Z.Quintas, A.Romosan, W.K.Sakumoto, H.Schellman, F.J.Sciulli, M.H.Shaevitz, W.H.Smith, P.Spentzouris, E.G.Stern, M.Vakili, U.K.Yang, J.Yu

Improved Determination of α(s) from Neutrino-Nucleon Scattering

NUCLEAR REACTIONS Fe(ν, X), E=30-360 GeV; analyzed data; deduced strong coupling constant α(s)(M(Z)2). 1H deduced F2, xF3 structure functions.

doi: 10.1103/PhysRevLett.79.1213
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1996CH51      Nucl.Instrum.Methods Phys.Res. A376, 208 (1996)

J.S.Chai, J.H.Ha, C.S.Lee, J.C.Kim, H.T.Chung, S.J.Chae, J.Y.Moon, J.Y.Huh, Y.S.Kim, J.K.Yu, G.W.Song, S.H.Bhatti, J.H.Park, S.H.Park, I.C.Kim, Y.S.Kim, Y.K.Kim, J.S.Hwang, H.Y.Nam, M.Cho

Light Output Response of BaF2 Scintillator to Light Charged Particles of Medium Energy

doi: 10.1016/0168-9002(96)00248-3
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1993SU31      Chin.J.Nucl.Phys. 15, No 3, 223 (1993)

X.Sun, J.Yu, Y.Guo, X.Lei, Y.Luo, J.Wang, X.Zhou, X.Xu, S.Wen, P.Weng, S.Li, C.Yang

Three-Quasiparticle Band of 125Cs

NUCLEAR REACTIONS 109Ag(19F, 2np), E=75 MeV; measured Eγ, Iγ, γγ-coin, γ(θ). 125Cs deduced levels, J, π, band structure.


1993XU04      Chin.J.Nucl.Phys. 15, No 1, 18 (1993)

X.Xu, J.Guo, Y.Guo, X.Ou, H.Liu, X.Lei, X.Sun, Y.Luo, J.Wang, J.Yu, T.Wang, Y.Wang, X.Zhou, L.Xu, S.Zhou

Proton Emitters Produced in 28Si + 28Si Reaction

NUCLEAR REACTIONS 28Si(28Si, X), E=104-127.2 MeV; measured fragment spectra; deduced evidence for 53mCo, 53Ni.

RADIOACTIVITY 53mCo(p); 53Ni(β+p) [from 28Si(28Si, X), E=104-127.2 MeV]; measured proton spectra, T1/2.


1992SU14      Chin.J.Nucl.Phys. 14, No 4, 295 (1992)

X.Sun, J.Wang, Y.Guo, X.Lei, Y.Luo, J.Yu, X.Xu, S.Wen, P.Wen, S.Li, X.Yang

Identification of the πg9/2 Band New Levels in 121Cs

NUCLEAR REACTIONS 112Sn(12C, 2np), E=60 MeV; measured γγ-coin. 121Cs deduced levels, J, π, band structure.


1992SU16      High Energy Phys. and Nucl.Phys. (China) 16, 62 (1992)

X.Sun, J.Yu, Y.Guo, X.Lei, Y.Luo, J.Wang, X.Xu, S.Wen, P.Weng, S.Li, C.Yang

Measurement of 125Ba High Spin States


1992SU17      High Energy Phys. and Nucl.Phys. (China) 16, 552 (1992)

X.Sun, J.Yu, Y.Guo, X.Lei, Y.Luo, J.Wang, X.Xu, S.Wen, P.Weng, S.Li, C.Yang

Study on the Excited States of 124Cs by Heavy Ion Reaction


1992SU18      High Energy Phys. and Nucl.Phys. (China) 16, 938 (1992)

X.Sun, J.Wang, Y.Guo, X.Lei, Y.Luo, J.Yu, X.Xu, S.Wen, P.Weng, S.Li, C.Yang

Observation of New Levels in 121Cs


1989HA02      Phys.Rev. C39, 336 (1989)

D.Halderson, M.Yu, J.Yu

Structure of the First Excited State of 4He

NUCLEAR REACTIONS 4He(e, e'), (e, e), E not given; calculated form factors. Recoil corrected shell model.

doi: 10.1103/PhysRevC.39.336
Citations: PlumX Metrics


1988FA12      High Energy Phys. and Nucl.Phys. (China) 12, 229 (1988)

W.Fan, Z.Zhao, X.Sun, W.Mu, J.Ma, W.Yang, X.Xie, L.Zhao, J.Yu

The decay study of 73Br


1988LI15      Chin.J.Nucl.Phys. 10, 52 (1988)

Li Jianwei, Wu Zhihua, Wu Songmao, Song Linggen, Yu Junsheng

Measurements of the Cross Sections of the Reactions 115In(n, 2n)114mIn and 113In(n, 2n)112mIn

NUCLEAR REACTIONS 113,115In(n, 2n), E=12.7-18.6 MeV; measured isomer production σ(E). 115In(n, 2n), E=15.75 MeV; measured isomer production. Activation technique.

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset30782.


1985SO11      Chin.J.Nucl.Phys. 7, 58 (1985)

Song Linggen, Wu Songmao, Xu Zhizheng, Yu Junsheng, Wu Zhihua

Measurement of Inelastic Cross Sections for the Reaction 87Sr(n, n')87mSr

NUCLEAR REACTIONS 87Sr(n, n'), E=0.9-1.8, 3.2-5.7 MeV; measured σ(E), isomer production.Enriched target, activation techniques.

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset32503.


1980JI02      Nucl.Phys. A349, 285 (1980)

G.-M.Jin, Y.-X.Xie, Y.-T.Zhu, W.-Q.Shen, X.-J.Sun, J.-S.Guo, G.-X.Liu, J.-S.Yu, C.-C.Sun, J.D.Garrett

Product Cross Sections for the Reaction of 12C with 209Bi

NUCLEAR REACTIONS, Fission 209Bi(12C, 12C), (12C, X), (12C, F), E=61-73 MeV; measured σ(θ, elastic), σ(θ, evaporation residue), σ(fission), σ(Eα, θ). 221Ac deduced fission barriers.

doi: 10.1016/0375-9474(80)90455-8
Citations: PlumX Metrics


1980YU01      Chin.J.Nucl.Phys. 2, 19 (1980)

Yu Jusheng, Wang Sufang, Tian Yuhong, Hou Mingdong, Miao Degui, Zeng Wenbing, Li Guangwei

Study of the Fission of the Excited Nuclei near Radium

NUCLEAR REACTIONS, Fission 197Au, Pb, 209Bi(12C, F), E=72.5 MeV; measured (fragment)(fragment)-coin; deduced symmetric fission dominance, fragment shape at scission.


1972LI21      Nuovo Cim. 8A, 801 (1972)

E.K.Lin, W.N.Wang, J.G.Yu

Investigation of the 26Mg(d, p)27Mg Reaction below 4 MeV

NUCLEAR REACTIONS 26Mg(d, p), E=2-3 MeV; measured σ(E;θ). 27Mg deduced S.


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Note: The following list of authors and aliases matches the search parameter J.Yu: , J.G.YU, J.K.YU, J.Q.YU, J.S.YU, J.W.YU, J.Y.YU