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NSR database version of April 26, 2024.

Search: Author = K.Yang

Found 11 matches.

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2019LI25      Phys.Rev. C 99, 054616 (2019)

W.Lin, P.Ren, H.Zheng, X.Liu, M.Huang, K.Yang, G.Qu, R.Wada

Solidarity of signal of measures for the liquid-gas phase transition in the statistical multifragmentation model

NUCLEAR STRUCTURE 40Ar, 100Rh, 200Th; 100Zr, 100Rh, 100Sn; calculated caloric curve, multiplicity derivative, moment parameters, fluctuation of maximum fragment charge number, the Fisher exponent, Zipf's law parameter, and charge distributions of fragmenting sources at energy of 1-15 MeV/nucleon and temperature T=3-10 MeV. 36Ar, 100Sn; calculated caloric curves at an energy of 2-25 MeV/nucleon. Nuclear liquid-gas phase transition and the mechanism of phase transition treated in the framework of the statistical multifragmentation model (SMM).

doi: 10.1103/PhysRevC.99.054616
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2019WA06      Phys.Rev. C 99, 024616 (2019)

R.Wada, W.Lin, P.Ren, H.Zheng, X.Liu, M.Huang, K.Yang, K.Hagel

Experimental liquid-gas phase transition signals and reaction dynamics

NUCLEAR REACTIONS 27Al, 48Ti, 58Ni(40Ar, X), E=47 MeV/nucleon; analyzed experimental data for charged particles (p, d, t, 3He, α) using the 4π detector NIMROD at TAMU K500 super-conducting cyclotron, quasi-projectile particle kinetic energy spectra, quasi-projectile charge and mass distribution, charged particle multiplicity, and excitation energy distributions; deduced phase transition signals by the statistical multifragmentation model (SMM), quadrupole momentum fluctuation temperatures, specific heat capacity, multiplicity derivative, and normalized variance of maximum charge in quasi-projectiles.

doi: 10.1103/PhysRevC.99.024616
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2015KI03      Nucl.Instrum.Methods Phys.Res. B349, 141 (2015)

H.Kim, S.J.Noh, Y.-R.Kang, M.Lee, D.H.Jeong, J.K.Kim, K.Yang, T.-I.Ro, S.G.Shin, Y.U.Kye, M.-H.Cho, G.Kim

Measurement of isomeric yield ratios in the photo-production of 133m, g;137m, gCe from natCe using 55-, 60-, and 65-MeV bremsstrahlung

NUCLEAR REACTIONS Ce(γ, xn)133Ce/137Ce, E=55, 60, 65 MeV; measured reaction products, Eγ, Iγ; deduced isomeric yield ratios. Comparison with available data.

doi: 10.1016/j.nimb.2015.02.055
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetG3129.


2015XU15      Sci. Rep. 5, 18350 (2015)

L.-Q.Xu, Y.-W.Liu, X.Kang, D.-D.Ni, K.Yang, No.Hiraoka, K.-D.Tsuei, L.-F.Zhu

The realization of the dipole (γ, γ) method and its application to determine the absolute optical oscillator strengths of helium

NUCLEAR REACTIONS He(γ, γ), E<100 eV; measured reaction products; deduced absolute dipole oscillator strengths, absolute optical oscillator strength (OOS). Comparison with available data. The Taiwan beamline BL12XU of SPring-8.

doi: 10.1038/srep18350
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2013SU07      Phys.Rev. C 87, 024312 (2013)

J.Su, W.P.Liu, N.C.Shu, S.Q.Yan, Z.H.Li, B.Guo, W.Z.Huang, S.Zeng, E.T.Li, S.J.Jin, X.Liu, Y.B.Wang, G.Lian, Y.J.Li, Y.S.Chen, X.X.Bai, J.S.Wang, Y.Y.Yang, R.F.Chen, S.W.Xu, J.Hu, S.Z.Chen, S.B.Ma, J.L.Han, P.Ma, Q.Hu, J.B.Ma, X.G.Cao, S.L.Jin, Z.Bai, K.Yang, F.D.Shi, W.Zhang, Z.Chen, L.X.Liu, Q.Y.Lin, X.S.Yan, X.H.Zhang, F.Fu, J.J.He, X.Q.Li, C.He, M.S.Smith

Reexamining the β decay of 53, 54Ni, 52, 53Co, 51Fe, and 50Mn

RADIOACTIVITY 50Mn, 50Cr, 51Fe, 52,53Co, 53,54Ni(β+), (EC), (β+p)[from (58Ni, X), E=68.6 MeV/nucleon]; measured β-delayed protons, (proton)γ-coin, Eγ, Iγ, T1/2 at HIRFL facility in Lanzhou. Implications for r process. Comparison with previous experimental studies.

doi: 10.1103/PhysRevC.87.024312
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Data from this article have been entered in the XUNDL database. For more information, click here.


1998YA11      Phys.Lett. 430B, 186 (1998)

K.-C.Yang, H.-L.Yu

Twist-3 and Quark Mass Contributions to the Polarized Nucleon Structure Function g2(x, Q2)

doi: 10.1016/S0370-2693(98)00451-1
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1995MI14      Phys.Rev. C51, 3404 (1995)

A.N.Mitra, K.-C.Yang

Off-Shell ρ-(Omega) Mixing Through Quark Loops with a Nonperturbative Meson Vertex and Quark Mass Functions

doi: 10.1103/PhysRevC.51.3404
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1991MA53      Chin.J.Nucl.Phys. 13, No 4, 347 (1991)

S.Ma, K.Yang, Z.Liu, H.Zhang

Th and U L-Subshell Ionization by Proton Impact

NUCLEAR REACTIONS Th, U(p, X), E=0.8-3.4 MeV; measured L-subshell ionization σ. ECPSSR theory.

ATOMIC PHYSICS Th, U(p, X), E=0.8-3.4 MeV; measured L-subshell ionization σ. ECPSSR theory.


1976YA10      Phys.Rev. C14, 1083 (1976)

K.-H.Yang, B.R.Holstein, M.M.Sternheim, D.A.Sparrow

Multiple-Scattering and Nucleon-Recoil Effects in Pion Production by Nucleons on Nuclei

NUCLEAR REACTIONS 208Pb(p, π+), (p, π-), E=760 MeV; calculated σ(θ).

doi: 10.1103/PhysRevC.14.1083
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1975YA06      Nucl.Phys. A240, 189 (1975)

K.-H.Yang, W.J.Gerace, J.F.Walker

Off-Energy Shell Behavior of a Single-Term Separable Energy-Dependent Potential

NUCLEAR REACTIONS 27Al(n, n), E=low; calculated σ; deduced potential.

doi: 10.1016/0375-9474(75)90325-5
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1975YA07      Nucl.Phys. A242, 365 (1975)

K.-H.Yang, W.J.Gerace, J.F.Walker, Jr.

Comparison of an Optical Potential with its Separable Representations. Fully Off-Shell Behavior

NUCLEAR REACTIONS 27Al(n, n); calculated potential.

doi: 10.1016/0375-9474(75)90101-3
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Note: The following list of authors and aliases matches the search parameter K.Yang: , K.C.YANG, K.H.YANG