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NSR database version of May 6, 2024.

Search: Author = V.V.Turovtsev

Found 17 matches.

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1987VA32      Ukr.Fiz.Zh. 32, 1125 (1987)

V.M.Vainberg, Yu.V.Orlov, V.S.Popov, V.V.Turovtsev

Virtual and Resonance Levels in the Yukawa Potential

NUCLEAR REACTIONS 1H(n, n), 1n(n, n), 1H(p, p), E not given; calculated scattering amplitude real, virtual pole positions; deduced Yukawa potential.


1986DU17      Izv.Akad.Nauk SSSR, Ser.Fiz. 50, 880 (1986); Bull.Acad.Sci.USSR, Phys.Ser. 50, No.5, 48 (1986)

E.M.Dubonos, A.L.Erzinkyan, V.V.Muraveva, V.P.Parfenova, V.V.Turovtsev

A Nuclear Orientation Method for Determining the Nuclear Magnetic Moment of 96Nb

RADIOACTIVITY 92mNb(EC), (β+); 96Nb(β-); measured γ(θ), oriented nuclei. 96Nb level deduced μ.


1985ER04      Phys.Stat.Sol. (a) 89, K201 (1985)

A.L.Erzinkyan, V.V.Muraveva, V.P.Parfenova, V.V.Turovtsev

Magnetic Hyperfine Interaction of 92mNb in ZrFe2

RADIOACTIVITY 92mNb(β+), (EC) [from 92Mo(p, n), E=5 MeV]; measured γ(θ, T), oriented nuclei; deduced hyperfine interaction in ZrFe2.

doi: 10.1002/pssa.2210890254
Citations: PlumX Metrics


1983AV02      Yad.Fiz. 37, 322 (1983)

G.V.Avakov, E.I.Dolinsky, V.V.Turovtsev

Generalized Peripheral Model with Account of Rescatterings. Application to (α, 2α) Reactions

NUCLEAR REACTIONS 6Li(α, 2α), E=40-80 MeV; calculated σ(E1, θ1, θ2); deduced vertex constants. Generalized peripheral model, rescattering effects.


1983ER09      Zh.Eksp.Teor.Fiz. 84, 1119 (1983); Sov.Phys.JETP 57, 649 (1983)

A.L.Erzinkyan, V.V.Muraveva, V.P.Parfenova, V.N.Ponomarev, V.V.Turovtsev

Magnetic Hyperfine Interaction and Nuclear Spin-Lattice Relaxation for 89Ym in ZrFe2

RADIOACTIVITY 89Zr(β+), (EC) [from 90Zr(γ, n), E=60-80 MeV]; measured γ(θ), oriented nuclei; deduced magnetic hyperfine splitting, hyperfine magnetic field for Y in ZrFe2. 89mY deduced nuclear spin lattice relaxation time.


1982ER10      Hyperfine Interactions 12, 227 (1982)

A.L.Erzinkyan, V.V.Muraveva, V.P.Parfenova, V.V.Turovtsev

Nuclear Orientation Study of the Quadrupole Interaction for Co in PdCo Alloy

RADIOACTIVITY 58Co(EC), (β+); 60Co(β-); measured γ(θ), oriented nuclei; deduced electric quadrupole to magnetic dipole interaction constant ratio for 60Co. Low temperature, ferromagnetic PdCo alloy.

doi: 10.1007/BF01026373
Citations: PlumX Metrics


1977BO42      Yad.Fiz. 26, 516 (1977); Sov.J.Nucl.Phys. 26, 274 (1977)

I.Borbei, E.I.Dolinskii, A.M.Mukhamedzhanov, V.V.Turovtsev

Effects of the Nuclear Vertex Form Factor in the Peripheral Model

NUCLEAR REACTIONS 18O(p, d), E=17.6 MeV; 19F(p, d), E=18.9 MeV; 19F(d, 3He), E=52 MeV; 14N(p, d), E=30.3 MeV; calculated σ(θ).


1974BA34      Nucl.Phys. A224, 61 (1974)

A.G.Baryshnickov, L.D.Blokhintsev, A.N.Safronov, V.V.Turovtsev

Dispersion K-Matrix Approach to Nuclear Reactions and its Application to Nα Scattering

NUCLEAR REACTIONS 4He(p, p), E=20.62 MeV; calculated σ(θ).

doi: 10.1016/0375-9474(74)90162-6
Citations: PlumX Metrics


1974DO03      Yad.Fiz. 19, 1003 (1974); Sov.J.Nucl.Phys. 19, 514 (1975)

E.I.Dolinskii, V.V.Turovtsev, R.Yarmukhamedov

Two-Particle Transfer Mechanism in the Reactions (6Li, d) and (7Li, t)

NUCLEAR REACTIONS 12C(d, 6Li), (6Li, d), (7Li, t), (3He, 7Be), 16O(6Li, d), (7Li, t); calculated contribution to σ of α-transfer, t + p, 3He + n transfers.


1973AV05      Izv.Akad.Nauk SSSR, Ser.Fiz. 37, 171 (1973); Bull.Acad.Sci.USSR, Phys.Ser. 37, No.1, 150 (1973)

G.V.Avakov, E.I.Dolinskii, V.V.Turovtsev

Pole Approximation for the (α, 2α) Reaction at 25-100 MeV

NUCLEAR REACTIONS 6,7Li, 9Be, 12C, 16O(α, 2α), E approx 25-70 MeV; calculated σ(E), σ(Eα').


1973BA27      Phys.Lett. 45B, 1 (1973)

A.G.Baryshnickov, L.D.Blokhintsev, A.M.Mukhamedzhanov, V.V.Turovtsev

Peripheral Model Approach to the Process of Radiative Proton Capture by Tritium

NUCLEAR REACTIONS 3H(p, γ), E=156 MeV; calculated σ(θ).

doi: 10.1016/0370-2693(73)90237-2
Citations: PlumX Metrics


1973TU02      Yad.Fiz. 17, 62 (1973); Sov.J.Nucl.Phys. 17, 32 (1973)

V.V.Turovtsev, R.Yarmukhamedov

Determination of the Vertex Coupling Constants from an Analysis of the Single-Nucleon Transfer on the Nuclei Mg26, Al27, and Si28

NUCLEAR REACTIONS 27Al(p, d), (d, t), (3He, α), (n, d), (3He, d), 26Mg(3He, d), 28Si(d, 3He), E=14-82 MeV; calculated σ(Ed, Et, Eα, E(3He), θ).


1972AV04      Nucl.Phys. A196, 529 (1972)

G.V.Avakov, E.I.Dolinsky, V.V.Turovtsev

Test of the Pole Approximation for (α, 2α) Reactions at Moderate Energies

doi: 10.1016/0375-9474(72)90791-9
Citations: PlumX Metrics


1972BB19      Pisma Zh.Eksp.Teor.Fiz. 16, 414 (1972); JETP Lett.(USSR) 16, 294 (1972)

A.G.Baryshnikov, L.D.Blokhintsev, A.N.Safronov, V.V.Turovtsev

Diagram K-Matrix Approach to pα Scattering


1970DO07      Phys.Lett. 33B, 147 (1970)

E.I.Dolinsky, V.V.Turovtsev, R.Yarmukhamedov

On the Theory of (6Li, d) and (7Li, t) Reactions

NUCLEAR REACTIONS 12C(6Li, d), (7Li, t), E=25, 30 MeV; measured nothing; analyzed σ(θ) data. Peripheral model.

doi: 10.1016/0370-2693(70)90285-6
Citations: PlumX Metrics


1970DO13      Izv.Akad.Nauk SSSR, Ser.Fiz. 34, 2188 (1970); Bull.Acad.Sci. USSR, Phys.Ser. 34, 1952 (1971)

E.I.Dolinskii, V.V.Turovtsev, R.Yarmukhamedov

On the Theory of the(6Li, d) and (7Li, t) Reactions

NUCLEAR REACTIONS 12C(6Li, d), E=25 MeV; 12C(7Li, t), E=30 MeV; 16O(6Li, d), E=25 MeV; 16O(7Li, t), E=30 MeV; analyzed σ(θ). Peripheral model.


1969DO08      Yadern.Fiz. 9, 515 (1969); Soviet J.Nucl.Phys. 9, 295 (1969)

E.I.Dolinskii, V.V.Turovtsev

Analysis of the Differential Cross Sections of the Reactions (p, d) and (He3, α) on Some Light Nuclei within the Framework of the Peripheral Model

NUCLEAR REACTIONS 10B(d, p), E=13-40 MeV; 4He(p, d), E=93 MeV; 12C(p, d), E=40, 57, 155 MeV; 14N(p, d), E=19, 30, 156 MeV; 19F(p, d), E=19, 156 MeV; 12C, 14N(3He, α), E=17-37 MeV; calculated σ(θ). Peripheral model.


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