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NSR database version of April 27, 2024.

Search: Author = V.N.Ponomarev

Found 16 matches.

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2023BE17      Bull.Rus.Acad.Sci.Phys. 87, 1091 (2023)

S.S.Belyshev, L.Z.Dzhilavyan, A.I.Karev, A.M.Lapik, A.L.Polonski, V.N.Ponomarev, A.V.Rusakov, A.A.Turinge

Studying the Yields of Reactions 13C(γ, p), 14N(γ, 2p), and 14N(γ, 2n) on a Pulsed Electron Accelerator with of (12B, 12N) Activity Measured by ΔE Detector Telescopes

NUCLEAR REACTIONS 13C(γ, p), 14N(γ, 2p), (γ, 2n), E<55 MeV; measured reaction products, Eβ, Iβ; deduced yields. The RM-55 pulse race-track microtron of the Russian Academy of Sciences' Lebedev Physical Institute and the Skobel'tsyn Nuclear Physics Institute of Moscow State University.

doi: 10.3103/S1062873823702908
Citations: PlumX Metrics


2022PO07      Bull.Rus.Acad.Sci.Phys. 86, 1079 (2022)

S.I.Potashev, A.A.Kasparov, V.N.Ponomarev

Branching Ratio of the 7Li Ground and Excited States during Interaction between Neutrons with Energies above 1 MeV and 10B Nuclei

NUCLEAR REACTIONS 10B(n, α), E<3 MeV; measured reaction products; deduced the branching ratio of the ground and excited states of 7Li nuclei emitted in interactions between neutrons and 10B nuclei at energies above 1 MeV. Comparison with ENDF/B-VII.1, JEFF-3.1.2, and JENDL-4.0 libraries. The LUE-8 accelerator.

doi: 10.3103/S1062873822090246
Citations: PlumX Metrics


2021DZ02      Phys.Atomic Nuclei 84, 1610 (2021)

L.Z.Dzhilavyan, A.M.Lapik, L.N.Latysheva, V.G.Nedorezov, V.N.Ponomarev, A.V.Rusakov, N.M.Sobolevsky, G.V.Solodukhov

Registration of Delayed Neutrons from 238U Photofission at Eγmax ∼ AP 10 MeV in Interval (1-5) ms after Beam Pulses of the Electron Accelerator

NUCLEAR REACTIONS 238U(γ, F), E<10 MeV; measured reaction products, En, In, Eγ, Iγ; deduced distributions of n and γ-ray counting rates, precursor nuclei of delayed fast neutrons T1/2 limit.

doi: 10.1134/S1063778821090131
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2021ME23      Bull.Rus.Acad.Sci.Phys. 85, 1065 (2021)

I.V.Meshkov, S.I.Potashev, S.Kh.Karaevskii, Yu.M.Burmistrov, G.V.Solodukhov, V.N.Ponomarev, A.I.Drachev

Dependence of the Dimensions and Spatial Distribution of a Neutron Flux on the Maximum Energy of Neutrons

doi: 10.3103/S106287382110021X
Citations: PlumX Metrics


2021PO14      Bull.Rus.Acad.Sci.Phys. 85, 1068 (2021)

S.I.Potashev, A.A.Afonin, Yu.M.Burmistrov, A.I.Drachev, E.S.Konobeevskii, V.N.Marin, I.V.Meshkov, S.Kh.Karaevskii, A.A.Kasparov, V.N.Ponomarev, G.V.Solodukhov, S.V.Zuyev

Feasibility of Monitoring the Maximum Energy of Fast Neutrons Using Pulse-Height Spectra from a 10B Detector

doi: 10.3103/S1062873821100221
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2021TU06      Phys.Atomic Nuclei 84, 1935 (2021)

A.A.Turinge, V.N.Ponomarev, G.V.Solodukhov, V.G.Nedorezov

Simulation of an Experiment on the Study of Total Nuclear Photoabsorption Cross Sections in the Region of the Pygmy Resonance

doi: 10.1134/S1063778821090349
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2020AF03      Bull.Rus.Acad.Sci.Phys. 84, 884 (2020)

A.A.Afonin, S.V.Zuyev, E.S.Konobeevski, M.V.Mordovskoy, V.N.Ponomarev, G.V.Solodukhov

Studying the Distribution of Thermal Neutrons from the W-Be output Channel of a Photoneutron Source

NUCLEAR REACTIONS 9Be(γ, n), E<9 MeV; measured reaction products, En, In; deduced distributions of thermal neutron flux density.

doi: 10.3103/S1062873820080031
Citations: PlumX Metrics


2020DZ02      Bull.Rus.Acad.Sci.Phys. 84, 356 (2020)

L.Z.Dzhilavyan, A.M.Lapik, V.G.Nedorezov, V.N.Ponomarev, A.V.Rusakov, G.V.Solodukhov

Delayed Neutrons from the Photofission of 238U at Eγ max ≈ 10 MeV in the Intervals between Pulses of Irradiation

doi: 10.3103/S1062873820040073
Citations: PlumX Metrics


2019DZ04      Physics of Part.and Nuclei 50, 626 (2019)

L.Z.Dzhilavyan, A.M.Lapik, V.G.Nedorezov, V.N.Ponomarev, A.V.Rusakov, G.V.Solodukhov

Delayed Neutrons from Photofission of 238U at Eγ < over ∼ 10 MeV

doi: 10.1134/s106377961905006x
Citations: PlumX Metrics


2019MO21      Bull.Rus.Acad.Sci.Phys. 83, 438 (2019)

M.V.Mordovskoy, S.V.Zuyev, E.S.Konobeevski, V.V.Mitcuk, V.N.Ponomarev, G.V.Solodukhov, I.V.Surkova

Determining the Energy Spectrum of Fast Neutrons in the n + 1H → n+p Reaction on the W-Be Source at the Institute for Nuclear Research, Russian Academy of Sciences

doi: 10.3103/S106287381904018X
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2019ZU01      Physics of Part.and Nuclei 50, 616 (2019)

S.V.Zuyev, E.S.Konobeevski, M.V.Mordovskoy, V.G.Nedorezov, V.N.Ponomarev, G.V.Solodukhov

Measurement of the Delayed Photon Yield of the Photofission Reaction as a Method for Identifying Fissile Materials

doi: 10.1134/s1063779619050265
Citations: PlumX Metrics


2019ZU02      Physics of Part.and Nuclei 50, 623 (2019)

S.V.Zuyev, E.S.Konobeevski, M.V.Mordovskoy, V.G.Nedorezov, V.N.Ponomarev, G.V.Solodukhov

Photoexcitation of Cd and In Nuclei by Real and Virtual Photons in the 4-9 MeV Energy Region

doi: 10.1134/s1063779619050289
Citations: PlumX Metrics


1983DO01      Yad.Fiz. 37, 264 (1983)

B.S.Dolbilkin, R.L.Kondratyev, N.N.Kostin, V.P.Lisin, V.N.Ponomarev, A.L.Polonsky

Measurement of Parameters of 27Al Ground and Low-Lying Excited States

NUCLEAR REACTIONS 27Al(e, e), (e, e'), E=29-79 MeV; measured σ, inelastic form factors. 27Al deduced rms charge radius, level transition B(E2).


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.


1981DJ02      Yad.Fiz. 33, 591 (1981)

L.Z.Djilavyan, L.E.Lazareva, V.N.Ponomarev, A.A.Sorokin

Isomeric Yield Ratios of the Reactions 197Au(γ, n)196m,gAu and 197Au(e, e'n)196m,gAu at Energies of 10-90 MeV

NUCLEAR REACTIONS 197Au(γ, n), (e, e'n), E=10-90 MeV; measured Eγ, Iγ. 196Au deduced levels, J, π, isomeric yield ratios. Activation technique.


1981DO11      Izv.Akad.Nauk SSSR, Ser.Fiz. 45, 188 (1981)

B.S.Dolbilkin, R.L.Kondratev, N.N.Kostin, V.P.Lisin, V.N.Ponomarev, A.L.Polonsky

Electron Scattering from 27Al

NUCLEAR REACTIONS 27Al(e, e'), E=28-75 MeV; measured σ(E, θ), form factors. 27Al level deduced charge distribution parameter. Intermediate coupling shell model.


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