NSR Query Results
Output year order : Descending NSR database version of April 29, 2024. Search: Author = N.Amangeldi Found 17 matches. 2024MO06 Chin.Phys.C 48, 024103 (2024) A.Morzabayev, N.Amangeldi, A.A.Ibraheem, D.Soldatkhan, G.Yergaliuly, B.Mauyey, A.A.Orazalievna, Sh.Hamada Dynamics of 7Li breakup and its influence on elastic scattering: a study of 7Li + 144Sm system NUCLEAR REACTIONS 144Sm(7Li, 7Li), E=21.6-52 MeV; analyzed available data; deduced σ(θ), optical model potential parameters.
doi: 10.1088/1674-1137/ad1029
2024NA03 Eur.Phys.J. A 60, 30 (2024) M.Nassurlla, N.Burtebayev, S.B.Sakuta, Sh.Hamada, S.V.Artemov, K.Rusek, N.Marzhan, N.Amangeldi, B.Mauyey, G.Yergaliuly, F.Ergashev, A.Sabidolda, R.Khojayev, Y.B.Mukanov, E.Piasecki, A.A.Ibraheem Scattering of 10B ions on 11B nuclei at an energy of 41.3 MeV NUCLEAR REACTIONS 11B(10B, 10B), E=41.3 MeV; measured reaction products. 10B; deduced σ(θ), σ, excited states J, π, spectroscopic amplitude value, optical model potential parameters. A cyclotron U-200P at the Heavy Ion Laboratory of Warsaw University.
doi: 10.1140/epja/s10050-023-01220-3
2023HA22 Int.J.Mod.Phys. E32, 2350015 (2023) Sh.Hamada, A.H.Al-Ghamdi, A.A.Alholaisi, A.A.Ibraheem, N.Amangeldi, Y.Abdou Analysis of elastic scattering of 6, 7Li and 20Ne from 24Mg nucleus using microscopic potentials NUCLEAR REACTIONS 24Mg(6Li, 6Li), E=20, 88, 240 MeV; 24Mg(7Li, 7Li), E=20, 34, 88 MeV; 24Mg(20Ne, 20Ne), E=50, 60, 80, 90, 100 MeV; analyzed available data; deduced optical model parameters, σ, volume integrals.
doi: 10.1142/S0218301323500155
2022AR03 Eur.Phys.J. A 58, 24 (2022) S.V.Artemov, R.Yarmukhamedov, N.Burtebayev, B.K.Karakozov, F.Kh.Ergashev, M.Nassurlla, S.B.Igamov, N.Amangeldi, A.Morzabayev, J.Burtebayeva, V.S.Zhdanov, G.Yergaliuly, E.Piasecki, K.Rusek, S.B.Sakuta, A.Demyanova, O.R.Tojiboev, A.Trzcinska, A.Sabidolda, R.Khojayev, K.I.Tursunmakhatov, M.Nassurlla, M.Wolinska-Cichocka, T.Kh.Sadykov, N.Saduyev Asymptotic normalization coefficient for 12C + p → 13N from the 12C(10B, 9Be)13N reaction and the 12C(p, γ)13N astrophysical S factor NUCLEAR REACTIONS 12C(10B, 9Be), E=41.3 MeV; measured reaction products. 13N; deduced σ(θ), S factor and thermonuclear reaction rates for 12C(p, γ) reaction, the "indirectly determined" ANC. The modified distorted wave Born approximation (MDWBA) method. The U-200P cyclotron (HIL of the University of Warsaw).
doi: 10.1140/epja/s10050-021-00652-z
2021NA14 Eur.Phys.J. A 57, 231 (2021) M.Nassurlla, N.Burtebayev, B.K.Karakozov, S.B.Sakuta, I.Boztosun, N.Amangeldi, A.K.Morzabayev, G.Yergaliuly, D.K.Alimov, J.Burtebayeva, M.Nassurlla, B.Mauyey, Y.Kucuk, Sh.Hamada, A.Sabidolda, R.Khojayev New measurements and analysis of elastic scattering of 13C by 9Be nuclei in a wide energy range NUCLEAR REACTIONS 9Be(13C, 13C), E=16.25, 19.5, 22.75, 28.12, 36.15, 57.77, 72.88 MeV; measured reaction products; deduced σ, σ(θ). OM and DWBA method, FRESCO program.
doi: 10.1140/epja/s10050-021-00539-z
2020AM01 Acta Phys.Pol. B51, 757 (2020) N.Amangeldi, N.Burtebayev, S.B.Sakuta, M.Nassurlla, J.Burtebayeva, M.Nassurlla, G.Yergaliuly, A.Sabidolda, K.Rusek, A.Trzcinska, M.Wolinska-Cichocka, B.Mauyey Study of Elastic Scattering of 10B Ions on 12C Nuclei at the Energy of 17.5 MeV
doi: 10.5506/APhysPolB.51.757
2020NA30 Chin.Phys.C 44, 104103 (2020) M.Nassurlla, N.Burtebayev, T.Kh.Sadykov, I.Boztosun, N.Amangeldi, D.Alimov, Z.Kerimkulov, J.Burtebayeva, M.Nassurlla, A.Kurakhmedov, S.B.Sakuta, M.Karakoc, A.A.Ibraheem, K.W.Kemper, S.Hamada New measurements and reanalysis of 14N elastic scattering on 10B target NUCLEAR REACTIONS 10B(14N, 14N), E= 38-94.0 MeV; measured reaction products; deduced σ(θ), possible contribution of the α-cluster exchange mechanism, spectroscopic amplitudes using the optical model and the distorted waves Born approximation method.
doi: 10.1088/1674-1137/abab89
2019BU18 Acta Phys.Pol. B50, 1423 (2019) N.Burtebayev, Sh.Hamada, A.A.Ibraheem, K.Rusek, M.Wolinska-Cichocka, J.Burtebayeva, N.Amangeldi, M.Nassurlla, M.Nassurlla, A.Sabidolda Effect of the Transfer Reactions for 16O+10B Elastic Scattering NUCLEAR REACTIONS 10B(16O, 16O), E=24 MeV; measured reaction products; deduced σ, optimal potential parameters. Comparison with available data.
doi: 10.5506/aphyspolb.50.1423
2017BU06 Acta Phys.Pol. B48, 495 (2017) N.Burtebayev, S.B.Sakuta, A.K.Morzabayev, Zh.K.Kerimkulov, N.Amangeldi, A.A.Temerbayev, B.Mauyey, Ye.Kok, A.S.Aimaganbetov Elastic Scattering of 15N Ions by 16O at the Energy 11.59 MeV NUCLEAR REACTIONS 16O(15N, 15N), E(cm)=11.59 MeV; measured reaction products; deduced σ(θ); calculated σ(θ) using optical model code Sfresco (angles below 900) and coupled channel code Fresco (proton transfer mechanism, all angles); deduced optical model parameters of 15N+16O using the fit to the data and existence of protons on the 16O surface.
doi: 10.5506/APhysPolB.48.495
2014HA34 Int.J.Mod.Phys. E23, 1450061 (2014) Sh.Hamada, N.Burtebayev, N.Amangeldi Detailed study for 16O → 12C + α and 12C → 11B + p spectroscopic factors NUCLEAR REACTIONS 12C(16O, 16O), E=28 MeV; 11B(12C, 12C), E=18 MeV; measured reaction products; deduced σ(θ), optical model potential parameters, spectroscopic factors. Comparison with DWBA and CCBA calculations.
doi: 10.1142/S021830131450061X
2013HA22 Int.J.Mod.Phys. E22, 1350058 (2013) Sh.Hamada, N.Burtebayev, N.Amangeldi Detailed study for 16O elastically scattered from 16O at energies 20, 24 and 28 MeV NUCLEAR REACTIONS 16O(16O, 16O), E=20, 24, 28 MeV; measured reaction products; deduced σ(θ). Comparison with optical model calculations.
doi: 10.1142/S0218301313500584
2012GR16 Bull.Rus.Acad.Sci.Phys. 76, 934 (2012); Izv.Akad.Nauk RAS, Ser.Fiz 76, 1038 (2012) K.A.Gridnev, N.A.Maltsev, N.Burtebaev, N.Amangeldy, Sh.Hamada Role of the inelastic transfer channel in elastic 16O + 12C scattering over a wide range of energies NUCLEAR REACTIONS 12C(16O, 16O), E<200 MeV; calculated σ(θ), α-cluster transfer. DWBA and CCBA calculations.
doi: 10.3103/S106287381208014X
2012HA45 J.Phys.:Conf.Ser. 381, 012130 (2012) S.Hamada, N.Burtebayev, N.Amangeldi, K.A.Gridnev, K.Rusek, Zh.Kerimkulov, N.Maltsev Phenomenological and semi-microscopic analysis for 16O and 12C elastically scattering on the nucleus of 16O and 12C at Energies near the Coulomb barrier NUCLEAR REACTIONS 12C(12C, 12C), E=18, 21 MeV;16O(16O, 16O), E=24, 28 MeV; measured E(particle), I(particle, θ); deduced σ(θ); calculated σ(θ) using phenomenological optical potential using SPI-GENDA code and using double-folding potential code FRESCO; deduced potential parameters.
doi: 10.1088/1742-6596/381/1/012130
2011AM02 Int.J.Mod.Phys. E20, 980 (2011) A.Amar, S.Hamada, N.Burtebayev, N.Amangeldy Study of scattering 1H, 12C and 16O nuclei on 1P-shell at energy near the Coulomb barrier NUCLEAR REACTIONS 6,7Li, 10,11B(p, p), E=300-1050 keV; measured proton spectrum; deduced σ(θ), optical model parameters. Comparison with code SPIVAL and DWBA calculations.
doi: 10.1142/S0218301311019106
2011GR11 Bull.Rus.Acad.Sci.Phys. 75, 961 (2011) K.A.Gridnev, N.Burtebayev, N.A.Maltsev, N.Amangeldi, Sh.Hamada Investigating the 16O + 12C reaction over a wide range of energies NUCLEAR REACTIONS 12C(16O, 16O), (16O, 12C), E=28 MeV; measured reaction products; deduced σ(θ). α-cluster transfer, DWBA model, DWUCK5 program.
doi: 10.3103/S1062873811070173
2011HA23 Nucl.Phys. A859, 29 (2011) Sh.Hamada, N.Burtebayev, K.A.Gridnev, N.Amangeldi Analysis of alpha-cluster transfer in 16O+ 12C and 12C+ 16O at energies near Coulomb barrier NUCLEAR REACTIONS 12C(16O, 12C), E=20, 24, 28 MeV; 16O(12C, 16O), E=21 MeV; measured E(particle), I(particle, θ); deduced σ(θ), optical potential parameters; calculated σ(θ) using optical model DWUCK5 and SPI-GENOA code.
doi: 10.1016/j.nuclphysa.2011.04.006
2011HA47 Phys.Scr. 84, 045201 (2011) Sh.Hamada, N.Burtebayev, K.A.Gridnev, N.Amangeldi Further investigation of the elastic scattering of 16O, 14N and 12C on the nucleus of 27Al at low energies NUCLEAR REACTIONS 27Al(16O, 16O), (14N, 14N), (12C, 12C), E=1.75 MeV/nucleon; measured reaction products; deduced σ, σ(θ). Comparison with optical model calculations.
doi: 10.1088/0031-8949/84/04/045201
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