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NSR database version of April 27, 2024.

Search: Author = M.I.Baznat

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2022TI01      Nucl.Instrum.Methods Phys.Res. A1026, 166151 (2022)

Yu.E.Titarenko, V.F.Batyaev, K.V.Pavlov, A.Yu.Titarenko, S.V.Malinovskiy, V.I.Rogov, V.M.Zhivun, T.V.Kulevoy, M.V.Chauzova, R.S.Khalikov, A.V.Ignatyuk, V.Yu.Blandinskiy, A.A.Kovalishin, M.I.Baznat, A.Yu.Stankovskiy, A.I.Dubrouski, H.I.Kiyavitskaya, T.Xue, Y.Tian, M.Zeng, Z.Zeng, O.Normahmedov, T.Sato

206, 207, 208, natPb(p, x)194Hg and 209Bi(p, x)194Hg excitation functions in the energy range 0.04-2.6 GeV

NUCLEAR REACTIONS Pb, 209Bi(p, X)194Hg, E=0.04-2.6 GeV; measured reaction products, Eγ, Iγ; deduced production σ. Comparison with theoretical calculations.

doi: 10.1016/j.nima.2021.166151
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF1462.


2020TI03      Nucl.Instrum.Methods Phys.Res. A984, 164635 (2020)

Y.E.Titarenko, V.F.Batyaev, K.V.Pavlov, A.Y.Titarenko, S.V.Malinovskiy, V.I.Rogov, V.M.Zhivun, T.V.Kulevoy, M.V.Chauzova, S.V.Lushin, A.S.Busygin, A.V.Ignatyuk, P.N.Alekseev, V.Y.Blandinskiy, A.A.Kovalishin, S.I.Tyutyunnikov, A.A.Baldin, A.N.Sosnin, M.I.Baznat, A.Y.Stankovskiy, A.I.Dubrouski, H.I.Kiyavitskaya, T.Xue, Y.Tian, M.Zeng, Z.Zeng, T.Sato

208, 207, 206, natPb(p, x)207Bi and 209Bi (p, x)207Bi excitation functions in the energy range of 0.04 - 2.6 GeV

NUCLEAR REACTIONS 206,207,208Pb, Pb, 209Bi(p, X)207Bi, E=0.04-2.6 GeV; measured reaction products, Eγ, Iγ; deduced σ and uncertainties. Comparison with MCNP-6.1, PHITS, Geant4 and TENDL-2019 calculations.

doi: 10.1016/j.nima.2020.164635
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF1448.


2016AB05      Eur.Phys.J. A 52, 259 (2016)

Kh.U.Abraamyan, A.B.Anisimov, M.I.Baznat, K.K.Gudima, M.A.Kozhin, V.I.Kukulin, M.A.Nazarenko, S.G.Reznikov, A.S.Sorin

Diphoton and dipion productions at the Nuclotron/NICA

NUCLEAR REACTIONS C(d, 2γ), E at 2.75 GeV/c/nucleon; measured Eγ, Iγ(θ), γγ-coin using lead-glass calorimeter PHOTON-2; deduced photon pairs, 2π0 pairs invariant mass distribution resonance at 360 MeV.

doi: 10.1140/epja/i2016-16259-x
Citations: PlumX Metrics


2010AB22      Physics of Part.and Nuclei 41, 1097 (2010)

Kh.U.Abraamyan, M.I.Baznat, A.V.Friesen, K.K.Gudima, M.A.Kozhin, S.A.Lebedev, M.A.Nazarenko, S.A.Nikitin, G.A.Ososkov, S.G.Reznikov, A.N.Sissakian, A.S.Sorin, V.D.Toneev

Resonance structure in the γγ invariant mass spectrum in pC- and dC-interactions

doi: 10.1134/S1063779610070257
Citations: PlumX Metrics


2009AB21      Phys.Rev. C 80, 034001 (2009)

Kh.U.Abraamyan, A.V.Friesen, M.A.Kozhin, S.A.Nikitin, S.G.Reznikov, M.I.Baznat, K.K.Gudima, S.A.Lebedev, M.A.Nazarenko, G.A.Ososkov, A.N.Sissakian, A.S.Sorin, V.D.Toneev

Resonance structure in the γγ invariant mass spectrum in pC and dC interactions

NUCLEAR REACTIONS 12C(p, X), E at 2.75 GeV/c; 12C(d, X), E at 5.5 GeV/c; measured Eγ, Iγ; deduced σ, width and σγγ of resonant structure in the invariant mass spectrum of two photons. Discussed possible mechanisms of ABC-like effect.

doi: 10.1103/PhysRevC.80.034001
Citations: PlumX Metrics


2005AD37      Part. and Nucl., Lett. 129, 25 (2005)

J.Adam, A.Balabekyan, V.S.Barashenkov, V.G.Kalinnikov, M.I.Krivopustov, V.S.Pronskikh, A.A.Solnyshkin, V.I.Stegailov, V.P.Filinova, V.M.Tsoupko-Sitnikov, R.Brandt, W.Westmeier, R.Odoj, S.G.Mashnik, R.E.Prael, K.K.Gudima, M.I.Baznat

Comparison of the Residual Nuclei Formation Cross Sections in the Targets 237Np and 241Am at the Proton Energy 660 MeV with Model Calculations

NUCLEAR REACTIONS 237Np, 241Am(p, X), E=660 MeV; measured fragments isotopic production σ.


2005MB02      J.Nucl.Radiochem.Sci. 6, No 2, A1 (2005)

S.G.Mashnik, M.I.Baznat, K.K.Gudima, A.J.Sierk, R.E.Prael

CEM03 and LAQGSM03: Extension of the CEM2k+GEM2 and LAQGSM Codes to Describe Photo-Nuclear Reactions at Intermediate Energies (30 MeV to 1.5 GeV)

NUCLEAR REACTIONS 1H(γ, π0), (γ, 2π0), (γ, π+), (γ, π+π-), (γ, π0π+), (γ, X), 2H(γ, n), E ≈ 1-10000 MeV; calculated σ, σ(θ). 12C, 16O, 27Al, 40Ca, 63Cu, 108Ag, 118Sn, 181Ta, 197Au, 208Pb, 232Th, 238U(γ, X), E ≈ 1-10000 MeV; calculated total photoabsorption σ. 197Au, 208Pb, 209Bi, 232Th, 233,235,238U, 237Np(γ, F), E ≈ 1-10000 MeV; calculated photofission σ. C, 64Cu(γ, pX), E ≈ 200-300 MeV; calculated proton spectra, σ(θ). C, Ca, Sn, Pb(γ, π+X), E=213 MeV; calculated pion spectra, σ(θ). 197Au(γ, X), E=1 GeV bremsstrahlung; calculated fragments isotopic yields. Improved cascade-exciton model, quark-gluon string model, comparisons with data.


2004AD38      Phys.Part. and Nucl.Lett. 1, 201 (2004); Pisma Zh.Fiz.Elem.Chast.Atom.Yadra No.4 [119], 53 (2004)

J.Adam, A.Balabekyan, V.S.Barashenkov, V.P.Dzhelepov, S.A.Gustov, V.P.Filinova, V.G.Kalinnikov, M.I.Krivopustov, I.V.Mirokhin, V.S.Pronskikh, A.A.Solnyshkin, V.I.Stegailov, V.M.Tsoupko-Sitnikov, J.Mrazek, R.Brandt, W.Westmeier, R.Odoi, S.G.Mashnik, R.E.Prael, K.K.Gudima, M.I.Baznat

Study of product formation in proton-nuclear reactions on the 129I target induced by 660-MeV protons

NUCLEAR REACTIONS 129I(p, X), E=660 MeV; measured fragments isotopic production σ.


1980BA52      Yad.Fiz. 31, 585 (1980); Sov.J.Nucl.Phys. 31, 303 (1980)

M.I.Baznat, N.I.Pyatov, V.M.Shilov

Transition Densities and Electro Excitation of Nuclear Dipole States

NUCLEAR REACTIONS 58Ni(e, e'), E=102 MeV; 140Ce(e, e'), E=92.1 MeV; 90Zr(e, e'), E=150, 183, 250 MeV; calculated E1 transition densities, form factors. Self-consistent microscopic method.

NUCLEAR STRUCTURE 90Zr, 208Pb, 140Ce; calculated dipole excitation transition densities, rms charge radii; deduced shape dependence on excitation. Self-consistent microscopic method.


1979BA58      Yad.Fiz. 30, 949 (1979); Sov.J.Nucl.Phys. 30, 493 (1979)

M.I.Baznat, A.V.Ignatyuk, N.I.Pyatov

Self-Consistent Theory of Giant Dipole Resonance in Heated Nuclei

NUCLEAR STRUCTURE 58Ni, 64,66,68,70Zn, 90,92Zr, 208Pb; calculated B(E1), GDR fragmentation, widths. Thermodynamical RPA.


1979PY01      Yad.Fiz. 29, 22 (1979); Sov.J.Nucl.Phys. 29, 10 (1979)

N.I.Pyatov, D.I.Salamov, M.I.Baznat, A.A.Kuliev, S.I.Gabrakov

Self-Consistent Theory of Coulomb Isospin Mixing in Nuclei

NUCLEAR STRUCTURE 42Ca, 46Ti, 46V, 42Sc, 64Ni, 50Cr, 62,64,66Zn, 54Co, 54Fe, 50Mn, 62,64,66Ga; calculated Coulomb isospin mixing effects in ground, excited 0+ states. Shell model, separable residual isovector forces.


1979PY04      Yad.Fiz. 30, 1219 (1979)

N.I.Pyatov, M.I.Baznat

Self-Consistent Description of Characteristics of Dipole Nuclear Excitations

NUCLEAR STRUCTURE 58Ni, 90Zr, 140Ce, 208Pb; calculated characteristics of GDR, 1- states. Translationally invariant Hamiltonian.


1978AL14      Izv.Akad.Nauk SSSR, Ser.Fiz. 42, 704 (1978); Bull.Acad.Sci.USSR, Phys.Ser. 42, No.4, 14 (1978)

B.A.Alikov, M.I.Baznat, F.R.Mai, M.M.Malikov, T.M.Muminov, V.V.Pashkevich

Analysis of the Properties of Odd-Even Isotopes of Terbium with A = 149, 151, 153, 155, and 157

NUCLEAR STRUCTURE 149,151,153,155,157Tb; calculated levels, J, K, π, δ, multipolarity, B(λ).


1977BA45      Yad.Fiz. 25, 1155 (1977); Sov.J.Nucl.Phys. 25, 613 (1977)

M.I.Baznat, N.I.Pyatov, D.I.Salamov

Translational Invariance Effects in Octupole Excitations of Deformed Nuclei

NUCLEAR STRUCTURE 226Ra, 226,228,230,232Th, 232,234U; calculated B(λ).


1977PA30      Izv.Akad.Nauk SSSR, Ser.Fiz. 41, 1590 (1977); Bull.Acad.Sci.USSR, Phys.Ser. 41, No.8, 48 (1977)

V.V.Palchik, M.I.Baznat, N.I.Pyatov

E2-Transitions with Δk = 1 in Odd Deformed Nuclei

NUCLEAR STRUCTURE 153,155Eu, 155,157Tb, 161Dy, 175Lu, 181Ta, 233U; calculated E2 transition probabilities with ΔK=1; deduced Coriolis mixing contributes to reduction.


1975BA19      Yad.Fiz. 21, 708 (1975); Sov.J.Nucl.Phys. 21, 365 (1975)

M.I.Baznat, N.I.Pyatov

Rotational Invariance and Effective Charges for E2 Transitions with ΔK = 1 in Odd Nuclei

NUCLEAR STRUCTURE 235U; calculated B(E2).


1975ST07      Nucl.Phys. A242, 30 (1975)

H.Strusny, H.Tyrroff, E.Herrmann, G.Musiol, M.I.Baznat, G.Beyer, K.Y.Gromov, M.Honusek, T.A.Islamov, V.V.Kuznetsov, H.-U.Siebert

The Decay of 159Tm (9.0 min) to 159Er

RADIOACTIVITY 159Tm [from Ta(p, xpyn), chemically, isotopically separated]; measured T1/2, Eβ+, Eγ, Iγ, I(ce), γγ-coin, γγ-delay; deduced Qβ+, log ft. 159Er deduced levels, J, π, γ-multipolarity, T1/2.

doi: 10.1016/0375-9474(75)90031-7
Citations: PlumX Metrics


1974BA18      Yad.Fiz. 19, 275 (1974); Sov.J.Nucl.Phys. 19, 135 (1974)

M.I.Baznat, N.I.Pyatov, M.I.Chernei

Magnetic Moments of Deformed Odd-Mass Nuclei in the Nonadiabatic Model

NUCLEAR STRUCTURE 153,155Eu, 155,157,159Tb, 165Ho, 169,171Tm, 175,177Lu, 181Ta, 183,185,187Re, 237,239Np, 241,243Am, 155,157,159Gd, 155,157,161,163,165Dy, 161,163,165,167Er, 173Yb, 177,179Hf; calculated μ.


1973BA85      Fiz.Elem.Chastits At.Yadra 4, 941 (1973); Sov.J.Particles Nucl. 4, 384 (1974)

M.I.Baznat, N.I.Pyatov, M.I.Chernei

Rotational Motion in Odd-Mass Atomic Nuclei

NUCLEAR STRUCTURE 161Dy, 161Er, 177Hf, 235U; calculated rotational band characteristics.

NUCLEAR MOMENTS 155,157Gd, 155,157,161,163,165Dy, 169,171Tm, 175,177Lu, 181Ta, 183,185,187Re; calculated μ.


1973BA86      Yad.Fiz. 18, 762 (1973); Sov.J.Nucl.Phys. 18, 391 (1974)

M.I.Baznat, N.I.Pyatov

Effect of the Coriolis Force on El Transitions between Rotational Bands

NUCLEAR STRUCTURE 153Eu, 161Ho, 177Hf levels calculated B(E1).


1973KE10      Nucl.Phys. A209, 271 (1973)

P.Kemnitz, L.Funke, K.-H.Kaun, H.Sodan, G.Winter, M.I.Baznat

High-Spin Rotational States in 171,173Lu and Evidence for ΔK = 2 and ΔK = 4 Mixings

NUCLEAR REACTIONS 169Tm(α, 2nγ), E=23-27 MeV; measured Eγ, σ(E;Eγ, θ), γγ-coin. 173Yb(d, 2nγ), E=13.5 MeV; measured Eγ, σ(Eγ), γγ-coin. 173Yb(p, nγ), E=6.7 MeV; measured Eγ, σ(Eγ). 171Lu, 173Lu deduced levels, J, π. Natural Tm, enriched 173Yb targets; Ge(Li) detectors.

doi: 10.1016/0375-9474(73)90578-2
Citations: PlumX Metrics


1972BA68      JINR-E4-6265 (1972)

M.I.Baznat, M.I.Chernei, N.I.Pyatov

Polarization Effects in the Rotational Motion of Odd-Mass Nuclei. III. Electromagnetic Properties of Rotational States

NUCLEAR STRUCTURE 155Gd, 161Dy, 177Hf, 167Er, 179Hf; calculated levels, μ, B(E2), B(M1). Nonadiabatic rotational model.


1972BA92      Izv.Akad.Nauk SSSR, Ser.Fiz. 36, 789 (1972); Bull.Acad.Sci.USSR, Phys.Ser. 36, 712 (1973)

M.I.Baznat, N.I.Pyatov, M.I.Chernei

Nonadiabatic Theory of Rotational Bands of Odd Nuclei

NUCLEAR STRUCTURE 161Dy; calculated levels, configurations, band parameters for ground-state band.


1972BB18      Phys.Scr. 6, 227 (1972)

M.I.Baznat, N.I.Pyatov, M.I.Chernej

Non-Adiabatic Effects in the Rotational Motion of Odd-Mass Deformed Nuclei

NUCLEAR STRUCTURE 161Dy, 155Gd, 165Ho, 167Er, 171Yb, 179Hf calculated rotational level properties.

doi: 10.1088/0031-8949/6/5-6/004
Citations: PlumX Metrics


1972GA24      JINR-P4-6509 (1972)

F.A.Gareev, M.I.Baznat, H.I.Vibike, G.Schulz

One-Nucleon Transfer Reactions to Quasi-Intersecting Levels 1/2+ 660 and 1/2+ 400, 3/2+ 651 and 3/2+ 402

NUCLEAR REACTIONS 160Gd(d, t), E=12 MeV; calculated σ(θ). Coupled channel approximation, state mixing.


1970BA02      Phys.Lett. 31B, 192 (1970)

M.I.Baznat, M.I.Chernej, N.I.Pyatov

Non-Adiabatic Calculation of Positive Parity States in 161Er and 163Er

NUCLEAR STRUCTURE 161,163Er; calculated positive-parity states. Non-adiabatic rotational model.

doi: 10.1016/0370-2693(70)90100-0
Citations: PlumX Metrics


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