NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = I.Yutlandov Found 48 matches. 2019ZI01 Phys.Rev. C 99, 024327 (2019) D.Zinatulina, V.Brudanin, V.Egorov, C.Petitjean, M.Shirchenko, J.Suhonen, I.Yutlandov Ordinary muon capture studies for the matrix elements in ββ decay NUCLEAR REACTIONS Se(μ-, νxn)76As/77As/79As/81As, Kr(μ-, νxn)84Br/85Br, Cd(μ-, νxn)109Ag/110Ag/111Ag/113Ag/115Ag, Sm(μ-, νxn), 48Ti(μ-, νxn)47Sc/48Sc, 76Se(μ-, νxn)71As/72As/74As/75mAs/76As, 82Kr(μ-, νxn)81Br/82Br, 106Cd(μ-, νxn)105Ag, 150Sm(μ-, νxn)148Pm/148mPm/149Pm/149mPm/150Pm/149Nd, E at 20-30 MeV/c PSI muon beam; measured muon x rays, Eγ, Iγ of decaying ordinary (non-radiative) μ capture products, half-lives of ordinary μ capture products using HPGe detectors for γ detection; deduced μ capture rates, partial capture probabilities. 48Sc, 76As, 106Ag; deduced levels, partial ordinary muon capture (OMC) probabilities to different excited states in daughter nuclei.
doi: 10.1103/PhysRevC.99.024327
2010ZI01 Bull.Rus.Acad.Sci.Phys. 74, 825 (2010); Izv.Akad.Nauk RAS, Ser.Fiz 74, 868 (2010) D.R.Zinatulina, Ch.Briancon, V.B.Brudanin, R.V.Vasilyev, K.Ya.Gromov, V.G.Egorov, C.Petitjean, V.I.Fominykh, V.G.Chumin, M.V.Shirchenko, I.A.Yutlandov Negative-muon capture in 150Sm NUCLEAR REACTIONS 150Sm(μ, X)148Pm/149Pm/150Pm/149Nd, E not given; measured Eγ, Iγ; deduced decay constant, T1/2.
doi: 10.3103/S1062873810060201
2008ZI03 Bull.Rus.Acad.Sci.Phys. 72, 737 (2008) D.R.Zinatulina, K.Ya.Gromov, V.B.Brudanin, Ch.Briancon, V.G.Egorov, C.Petitjean, V.I.Fominykh, V.G.Chumin, M.V.Shirchenko, I.A.Yutlandov Muon capture rates in Se and Cd isotopes NUCLEAR REACTIONS 76,77,78,80,82Se, 106,110,111,112,114,116Cd(μ-, nν), E not given; 76Se(μ-, 2nν), E not given; measured Eγ, Iγ, capture rates, lifetimes, yields.
doi: 10.3103/S1062873808060051
2006EG04 Czech.J.Phys. 56, 453 (2006) V.Egorov, V.Brudanin, K.Gromov, A.Klinskih, M.Shirchenko, Ts.Vylov, I.Yutlandov, D.Zinatulina, Ch.Briancon, C.Petitjean, O.Naviliat-Cuncic μCR42β: Muon capture rates for double-beta decay NUCLEAR REACTIONS 48Ti, 76,77,78,80,82Se, 106,110,111,112,114,116Cd(μ-, nν), E at rest; measured Eγ, Iγ; deduced muon capture rates. Comparison with model predictions, implications for 2β-decay matrix elements discussed.
doi: 10.1007/s10582-006-0108-4
2003GL07 Bull.Rus.Acad.Sci.Phys. 67, 1640 (2003) P.V.Glinko, M.V.Chirtchenko, S.I.Vasiliev, V.G.Egorov, I.A.Yutlandov γ-radiation accompanying muon capture in argon and neon NUCLEAR REACTIONS Ar(μ-, X)38Cl/39Cl/40Cl, E not given; Ne(μ-, X)19F/20F, E not given; measured prompt and delayed Eγ, Iγ; deduced partial yields.
2003VO01 Eur.Phys.J. A 16, 139 (2003) V.Vorobel, Ch.Briancon, V.Brudanin, V.Egorov, J.Deutsch, R.Prieels, N.Severijns, Yu.Shitov, Ch.Vieu, Ts.Vylov, I.Yutlandov, Sh.Zaparov Beta-neutrino angular correlation in the decay of 14O RADIOACTIVITY 14O(β+) [from 12C(3He, n)]; measured Eγ, βγ-coin, angular correlation; deduced beta-neutrino coupling coefficient. Role of interatomic interactions discussed.
doi: 10.1140/epja/i2002-10067-y
2002SH04 Nucl.Phys. A699, 917 (2002) Yu.Shitov, V.Egorov, Ch.Briancon, V.Brudanin, J.Deutsch, T.Filipova, C.Petitjean, R.Prieels, T.Siiskonen, J.Suhonen, Ts.Vylov, V.Wiaux, I.Yutlandov, Sh.Zaparov Doppler-Broadening of Gamma Rays following Muon Capture: Search for scalar coupling NUCLEAR REACTIONS 16O(μ-, ν), E at rest; measured Eγ, Doppler broadening; deduced spin-neutrino correlations. Gas target.
doi: 10.1016/S0375-9474(01)01284-2
2002SH18 Czech.J.Phys. 52, 459 (2002) Yu.Shitov, V.Egorov, V.Brudanin, I.Yutlandov, Ts.Vylov, Ch.Briancon, J.Deutsch, R.Prieels, C.Petitjean, J.Suhonen Investigations of Weak Couplings Measuring Angular Correlations in μ-Capture: Impact of nuclear models NUCLEAR REACTIONS 16O, 28Si(μ-, ν), E not given; measured γ-spectra, angular correlations; deduced matrix elements.
doi: 10.1023/A:1015396924290
2000BR21 Nucl.Phys. A671, 647 (2000) Ch.Briancon, V.Brudanin, J.Deutsch, V.Egorov, T.Filipova, M.Kudoyarov, V.Lobanov, T.Mamedov, A.Pasternak, R.Prieels, A.Salamatin, Yu.Shitov, Ts.Vylov, I.Yutlandov, Sh.Zaparov The Spin-Neutrino Correlation Revisited in 28Si Muon Capture: A new determination of the induced pseudoscalar coupling gP/GA NUCLEAR REACTIONS 28Si(polarized μ-, ν), E at ≈ 125 MeV/c; measured Eγ, Iγ(θ) following residual nucleus decay; deduced alignment parameter, induced pseudoscalar coupling.
doi: 10.1016/S0375-9474(99)00819-2
1998BR23 Yad.Fiz. 61, No 8, 1395 (1998); Phys.Atomic Nuclei 61, 1293 (1998) Ch.Briancon, V.B.Brudanin, J.Deutsch, V.G.Egorov, T.V.Filipova, J.Govaerts, C.Petitjean, R.Prieels, N.Severijns, Yu.A.Shitov, V.Vorobel, Ts.Vylov, V.Wiaux, I.A.Yutlandov, Sh.Zaparov Experiment AnCor: Search for scalar interaction in β decay and μ capture RADIOACTIVITY 14O, 18Ne(β+); measured βγ-coin, βγ(θ); deduced β-ν angular correlation. NUCLEAR REACTIONS 16O(μ, ν), E not given; measured Doppler-shifted Eγ, Iγ; deduced correlation coefficient.
1997EG02 Nucl.Phys. A621, 745 (1997) V.Egorov, Ch.Briancon, V.Brudanin, J.Dionisio, J.Deutsch, V.Gorozhankin, Yu.Gurov, R.Prieels, V.Sandukovsky, N.Severijns, M.Simoes, Yu.Shitov, Ch.Vieu, V.Vorobel, Ts.Vylov, I.Yutlandov, Sh.Zaparov Beta-Neutrino Angular Correlation in the Decay of 18Ne RADIOACTIVITY 18Ne(β+); measured βγ-coin, βγ(θ), Iγ(θ); deduced Doppler shift, parameter C(s)/C(v). Source from 3He bombardment of B2O3 thin foil.
doi: 10.1016/S0375-9474(97)00178-4
1995BR15 Nucl.Phys. A587, 577 (1995) V.Brudanin, V.Egorov, T.Filipova, A.Kachalkin, V.Kovalenko, A.Salamatin, Yu.Shitov, I.Stekl, S.Vassiliev, V.Vorobel, Ts.Vylov, I.Yutlandov, Sh.Zaparov, J.Deutsch, R.Prieels, L.Grenacs, J.Rak, Ch.Briancon Measurement of the Induced Pseudoscalar Form Factor in the Capture of Polarized Muons by Si Nuclei NUCLEAR REACTIONS 28Si(polarized μ-, ν), E at ≈ 131 MeV/c; measured Eγ, Iγ; deduced nuclear state alignment parameter g(p)/g(A). 28Al deduced levels. Natural target.
doi: 10.1016/0375-9474(95)00052-3
1990BR15 Phys.Lett. 146A, 347 (1990) V.B.Brudanin, V.M.Bystritsky, V.G.Egorov, S.G.Shamsutdinov, A.L.Shyshkin, V.A.Stolupin, I.A.Yutlandov Does Cold Nuclear Fusion Exist ( Question ) NUCLEAR REACTIONS 2H(d, n), (d, γ), E=low; measured reaction rate upper limits; deduced negligible fusion evidence. Neutron, γ-, X-ray detection.
doi: 10.1016/0375-9601(90)90968-T
1990BR16 Phys.Lett. 146A, 351 (1990) V.B.Brudanin, V.M.Bystritsky, V.G.Egorov, S.G.Shamsutdinov, A.L.Shyshkin, V.A.Stolupin, I.A.Yutlandov Once More About Cold Nuclear Fusion NUCLEAR REACTIONS 2H(d, n), E=low; measured reaction rate upper limit; deduced cold fusion implications.
doi: 10.1016/0375-9601(90)90969-U
1990BR31 Phys.Lett. 151A, 543 (1990) V.B.Brudanin, V.M.Bystritsky, V.G.Egorov, S.G.Stetsenko, I.A.Yutlandov Search for the Cold Fusion d(d, 4He) in Electrolysis of D2O NUCLEAR REACTIONS 2H(d, α), E=low; measured partial reaction rate upper limit.
doi: 10.1016/0375-9601(90)90477-6
1976KU08 Nucl.Phys. A270, 175 (1976) W.Kurcewicz, N.Kaffrell, N.Trautmann, A.Plochocki, J.Zylicz, K.Stryczniewicz, I.Yutlandov Collective States Fed by Weak α-Transitions in the 230U Chain RADIOACTIVITY 230U [from 232Th(p, 3n), 230Pa β-decay], 226Th, 222Ra, 218Rn; measured Eγ, Iγ, γγ-coin, I(ce); deduced ICC, hf. 226Th, 222Ra, 218Rn, 214Po deduced levels, J, π. Ge(Li), Si(Li) detectors.
doi: 10.1016/0375-9474(76)90133-0
1973KU09 J.Phys.(Paris) 34, 159 (1973) W.Kurcewicz, K.Stryczniewicz, J.Zylicz, R.Broda, S.Chojnacki, W.Walus, I.Yutlandov Nuclear Levels of 228Th Populated in the Decay of 228Pa RADIOACTIVITY 228Pa; measured Eγ, Iγ, γγ-coin, γce-coin. Deduced Q, log ft. 228Th deduced levels, J, π, γ-multipolarities, γ-branching.
doi: 10.1051/jphys:01973003402-3015900
1972BU24 Yad.Fiz. 15, 945 (1972); Sov.J.Nucl.Phys. 15, 526 (1972) G.G.Bunatyan, L.Vilgelmova, V.S.Evseev, L.N.Nikityuk, V.N.Pokrovskii, V.N.Rybakov, I.A.Yutlandov Probability of (μ-, ν) Process on La139 and Pb208 Nuclei NUCLEAR REACTIONS 139La, 208Pb(μ-, ν), E approx 0; measured relative probabilities.
1972LE49 Geokhimiya No.11, 1406 (1972) L.K.Levsky, A.N.Murin, I.A.Yutlandov Determination of the Relative Yield of Crypton Isotopes during Irradiation of Targets by 660 MeV Protons NUCLEAR REACTIONS Rb, Sr(p, X), E=660 MeV; measured 78,80,81,82,84,85,86Kr yields.
1971KU25 Acta Phys.Pol. B2, 451 (1971) W.Kurcewicz, K.Stryczniewicz, J.Zylicz, S.Chojnacki, T.Morek, I.Yutlandov Levels of 230Th and 230U Fed in the Decay of 230Pa RADIOACTIVITY 230Pa; measured Eγ, Iγ, I(ce), ceγ-coin; deduced Q, log ft. 230Th, 230U deduced levels, J, π, ICC, γ-multipolarity. Ge(Li), NaI(Tl) detectors.
1971VI13 Yad.Fiz. 13, 551 (1971); Sov.J.Nucl.Phys. 13, 310 (1971) L.Vilgelmova, V.S.Evseev, L.N.Nikityuk, V.N.Pokrovsky, I.A.Yutlandov Probability of Reaction (μ-, νp) on Si28 and K39 Nuclei NUCLEAR REACTIONS 28Si, 39K(μ-, νp), E approx 0; measured σ. Activation method.
1970BU17 Yad.Fiz. 11, 795 (1970); Sov.J.Nucl.Phys. 11, 444 (1970) G.G.Bunatyan, V.S.Evseev, L.N.Nikityuk, V.N.Pokrovskii, V.N.Rybakov, I.A.Yutlandov Experimental Determination of the Probability of the Process (μ-, ν) on the Nuclei Al27, Si28, and V51 NUCLEAR REACTIONS 27Al, 28Si, 51V(μ-, ν), E approx 0; measured σ(Eγ); deduced relative probabilities.
1970KU18 INR-P-1251 (1970); see 70KuZR W.Kurcewicz, K.Stryczniewicz, J.Zylicz, S.Chojnacki, T.Morek, I.Yutlandov Levels of 230Th and 230U Fed in the Decay of 230Pa
1970MI13 Yad.Fiz. 12, 234 (1970); Sov.J.Nucl.Phys. 12, 127 (1971) V.P.Milovanov, V.N.Pokrovskii, P.A.Cerenkov, I.A.Yutlandov Angular Dependences of Multiply Charged Particles Produced from Al27 Nuclei under the Influence of 660-MeV Protons NUCLEAR REACTIONS 27Al(p, X), E=660 MeV; measured σ(θ).
1969BU16 Yadern.Fiz. 9, 783 (1969); Soviet J.Nucl.Phys. 9, 457 (1969) G.G.Bunatyan, V.S.Evseev, L.N.Nikityuk, A.A.Nikolina, V.N.Pokrovskii, V.S.Roganov, L.M.Smirnova, I.A.Yutlandov Experimental Determination of the Probability of the (μ-, ν) Process In the Nucleus Fe56 NUCLEAR REACTIONS 56Fe(μ-, ν), E approx 0; measured relative capture probability.
1969DE11 Yadern.Fiz. 9, 930 (1969); Soviet J.Nucl.Phys. 9, 544 (1969) F.P.Denisov, V.P.Milovanov, V.N.Pokrovskii, P.A.Cerenkov, I.A.Yutlandov Angular Distribution of Na24 Recoil Nuclei Produced in the Reaction Al27(p, 3pn) NUCLEAR REACTIONS 27Al(p, 3pn), E=660 MeV; measured σ(θ(24Na)).
1968DE21 Yadern.Fiz. 7, 743(1968); Soviet J.Nucl.Phys. 7, 452(1968) F.P.Denisov, V.P.Milovanov, V.N.Pokrovskii, P.A.Cerenkov, I.A.Yutlandov Angular Distribution of Recoil Nuclei in the Reaction F19(p, pn)F18 NUCLEAR REACTIONS 19F(p, pn), E=600 MeV; measured σ(θ(recoil)).
1968DE22 Yadern.Fiz. 7, 954(1968); Soviet J.Nucl.Phys. 7, 574(1968) F.P.Denisov, V.P.Milovanov, V.N.Pokrovskii, P.A.Cerenkov, I.A.Yutlandov Angular Distribution of Recoil Nuclei in the Reaction C12(p, pn)C11 NUCLEAR REACTIONS 12C(p, pn), E=660 MeV; measured σ(θ).
1966LE14 Nucl.Phys. 81, 81(1966) I.Levenberg, V.Pokrovsky, L.Tarasova, V.Cheng-Peng, I.Yutlandov Reactions (p, pn), (p, 2n) and (p, n) on 89Y Induced by High-Energy Protons NUCLEAR REACTIONS 89Y(p, pn), (p, 2n), (p, n), E = 120-670 MeV; measured σ(E). Natural target.
doi: 10.1016/0029-5582(66)90643-2
1965JA06 Nucl.Phys. 67, 271 (1965) J.Jastrzebski, M.Moszynski, K.Stryczniewicz, A.Zglinski, I.Yutlandov Life Time of the 55 keV Level in 188Ir RADIOACTIVITY 188Pt[from Au (660 MeV-p)]; measured Eγ, γ ce-coin, γ ce-delay. 188Ir[from 188Pt], measured Eγ. 188Ir deduced level T1/2.
doi: 10.1016/0029-5582(65)90802-3
1964JE04 Zh.Eksp.Teor.Fiz. 46, 1475 (1964) T.H.Jen, I.Levenberg, V.Pokrovskii, L.Tarasova, I.Yutlandov The reactions (p, pn) and (p, n) on Sc45 induced by high-energy protons NUCLEAR REACTIONS 45Sc, 48Ca, 27Al(p, np), (p, n), E=120, 200, 300, 400, 500, 600, 670 MeV; measured reaction products; deduced σ. Radiochemical studies. Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC0249. 1964LE24 Nucl.Phys. 51, 673 (1964) I.Levenberg, V.Pokrovsky, R.De-Hou, L.Tarasova, I.Yutlandov The (p, pn) and (p, n) reactions on SC45 induced by high-energy protons NUCLEAR REACTIONS 45Sc(p, n), 45Sc(p, np), E=120-670 MeV; measured products, 44Sc, Eπ, Iπ; deduced σ, σ(E). Data were imported from EXFOR entry C0256.
doi: 10.1016/0029-5582(64)90303-7
1963JA06 Nucl.Phys. 41, 303 (1963) A.Jasinski, J.Kownacki, H.Lancman, J.Ludziejewski, S.Chojnacki, I.Yutlandov The Decay Scheme of Yb-166 NUCLEAR STRUCTURE 166Yb; measured not abstracted; deduced nuclear properties.
doi: 10.1016/0029-5582(63)90508-X
1963LE24 Nucl.Phys. 41, 504 (1963) I.Levenberg, V.Pokrovsky, I.Yutlandov Simple nuclear reactions on Ca48 induced by high energy protons NUCLEAR REACTIONS 48Ca(p, 2n), 48Ca(p, n), 48Ca(p, np), E=120-660 MeV; measured products, 47Ca, Eπ, Iπ; deduced σ, σ(E). Data were imported from EXFOR entry C0249.
doi: 10.1016/0029-5582(63)90527-3
1963WO03 Inst.Nucl.Res., Warsaw, Poland, Rept.No. PAN-430/I (1963) O.Wolczek, T.Nguyen, I.Yutlandov Determination of the 159Dy → 159Tb Transition Energy by the Method of The Shape of the Internal Bremsstrahlung Spectrum NUCLEAR STRUCTURE 159Dy; measured not abstracted; deduced nuclear properties.
1963ZY01 Nucl.Phys. 42, 330 (1963) J.Zylicz, Z.Sujkowski, J.Jastrzebski, O.Wolczek, S.Chojnacki, I.Yutlandov Experimental Matrix Element for the Electron Capture Transition Er-165 → Ho-165 NUCLEAR STRUCTURE 165Er; measured not abstracted; deduced nuclear properties.
doi: 10.1016/0029-5582(63)90740-5
1961BO20 Acta.Phys.Polon. 20, 351 (1961) E.Bozek, H.Niewodniczanski, S.Ogaza, S.Szymczyk, T.Walczak, I.A.Yutlandov Gamma-Vibrational Levels in 166Er NUCLEAR STRUCTURE 166Er; measured not abstracted; deduced nuclear properties.
1961CH25 Acta Phys.Polon. 20, 1021 (1961) S.Chojnacki, J.Kopystynski, J.Zylicz, I.Yutlandov
1960AB04 Nucl.Phys. 21, 164 (1960) A.Abdurazakov, K.Gromov, B.Dalkhsuren, B.Dzhelepov, I.Levenberg, A.Murin, Yu.Norseyev, V.Pokrovsky, V.Chumin, I.Yutlandov The Decay Chain Yb164 → Tm164 → Er164 NUCLEAR STRUCTURE 164Tm, 164Yb; measured not abstracted; deduced nuclear properties.
doi: 10.1016/0029-5582(60)90042-0
1960CH14 NP-8895 (1960) S.Chojnacki, J.Kopystynski, Z.Preibisz, R.Sosnowski, I.Yutlandov, J.Zylicz β+ Radiation of Pr140 NUCLEAR STRUCTURE 140Pr; measured not abstracted; deduced nuclear properties.
1960DA16 Izvest.Akad.Nauk SSSR, Ser. Fiz. 24, 1105 (1960); Columbia Tech.Transl. 24, 1109 (1961) B.Dalkhsuren, I.Yu.Levenberg, A.N.Murin, Yu.V.Norseev, V.N.Pokrovsky, I.A.Yutlandov The Decay Scheme of Yb164 → Tm164 → Er164 NUCLEAR STRUCTURE 164Tm, 164Yb; measured not abstracted; deduced nuclear properties.
1960DA23 Repts.Third Conf.Neutron-Deficient Isotopes, Dubna (June 1960); NP-13165, Vol.1, p.143 (1964) B.Dalkhsuren, L.M.Gvozdeva, M.Y.Kuznetsova, I.Y.Levenberg, Y.V.Norseev, V.N.Pokrovskii, I.A.Yutlandov Some Remarks on the Decay Chains Tm163 (2 hrs)→ Er163 (75 min)→ Ho163 → Dy163 and Tm161 (37 min)→ Er161 (3.5 hrs)→ Ho161 (2.5 hrs) → Dy161 NUCLEAR STRUCTURE 163Er, 163Tm, 161Er, 161Tm; measured not abstracted; deduced nuclear properties.
1960KH01 NP-8858 (1960) S.Khoinatski, A.Yasinski, V.Kush, Ya.Kovnatski, G.Lantsman, I.A.Yutlandov Gamma Spectrum Tm167 NUCLEAR STRUCTURE 167Tm; measured not abstracted; deduced nuclear properties.
1960VO08 Repts.Third Conf.Neutron-Deficient Isotopes, Dubna (June 1960); NP-13165, Vol.1, p.106 (1964) O.Volchek, J.Zylicz, Z.Preibisz, S.Khoinatskii, I.Yutlandov β- Emission from Tm172 NUCLEAR STRUCTURE 172Tm; measured not abstracted; deduced nuclear properties.
1959CH26 Bull.Acad.Polon.Sci.Classe (III) 7, 535 (1959) S.Chojnacki, B.Sosnowski, O.Wolczek, I.A.Yutlandov, H.Lancman, J.Zylicz Internal Conversion Electrons of 167Tm
1958BA46 Izvest.Akad.Nauk SSSR, Ser.Fiz. 22, 808 (1958); Columbia Tech.Transl. 22, 802 (1959) V.I.Baranovskii, A.N.Murin, V.N.Pokrovskii, I.A.Yutlandov Mass Numbers of Neutron-Deficient Terbium Isotopes
1958GR03 Izvest.Akad.Nauk SSSR, Ser.Fiz. 22, 850 (1958); Columbia Tech.Transl. 22, 845 (1959) O.I.Grigorev, B.S.Kuznetsov, N.S.Shimanskaia, I.Y.Yutlandov Determination of the L/K Ratios for Dy159 and Er165 and Evaluation of the Dy159 → Tb159 and Er165 → Ho165 Transition Energies
1958LE25 Izvest.Akad.Nauk SSSR, Ser.Fiz. 22, 839 (1958); Columbia Tech.Transl. 22, 833 (1959) A.I.Lebedev, A.N.Silantev, I.A.Yutlandov Gamma-Spectrum of Lu171 RADIOACTIVITY 171Lu(EC), (β+) [from Ta(p, X); measured Eγ, Iγ, E X-ray, I X-ray. 171Yb levels deduced relative Iγ.
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