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NSR database version of May 10, 2024.

Search: Author = S.V.Romanov

Found 10 matches.

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2017RO19      Phys.Atomic Nuclei 80, 412 (2017); Yad.Fiz. 80, 195 (2017)

S.V.Romanov

On the reaction of muon transfer from protium to neon at low collision energies

doi: 10.1134/S1063778817020247
Citations: PlumX Metrics


2004RO02      Eur.Phys.J. D 28, 11 (2004)

S.V.Romanov

On the muon transfer from protium to neon

ATOMIC PHYSICS, Mesic-atoms Ne(μ-, X), E=low; calculated muon transfer rate from protium to neon.

doi: 10.1140/epjd/e2003-00305-4
Citations: PlumX Metrics


1998RO22      Eur.Phys.J. D 2, 217 (1998)

S.V.Romanov

The Two-Photon 2s → 1s Transition of the Fully-Ionized Muonic Boron Migrating in Helium

ATOMIC PHYSICS, Mesic-atoms B; calculated muonic boron scattering in helium.

doi: 10.1007/s100530050134
Citations: PlumX Metrics


1993RO26      Z.Phys. D28, 7 (1993)

S.V.Romanov

The Hyperfine Muon-Nucleus Interaction and P-Odd Effects in the One-Photon 2s → 1s Transition of Light Muonic Atoms

ATOMIC PHYSICS, Mesic-Atoms 9Be, 10,11B; calculated muonic atom P-odd γ CP vs Δ(2p1/2). New mechanism for hyperfine structure on the P-odd correlations.

doi: 10.1007/BF01437450
Citations: PlumX Metrics


1992RO09      Z.Phys. D22, 667 (1992)

S.V.Romanov, D.P.Grechukhin

A Role of the Hyperfine Interaction of the Negative Muon and an Electron Shell in Forming P-Odd Correlations in the Muonic Ion μ20Ne

ATOMIC PHYSICS, Mesic-Atoms 20Ne; calculated P-odd correlations in radiative transitions, 2s → 1s decay rates; deduced hyperfine interaction role.

doi: 10.1007/BF01437247
Citations: PlumX Metrics


1989GR28      Izv.Akad.Nauk SSSR, Ser.Fiz. 53, 2171 (1989); Bull.Acad.Sci.USSR, Phys.Ser. 53, No.11, 114 (1989)

D.P.Grechukhin, S.V.Romanov

Role of the Electron-Bridge Mechanism in the Formation of P-Odd Correlations in Mossbauer γ Transitions of 57Fe and 119Sn Nuclei

NUCLEAR REACTIONS 57Fe(γ, γ), E=14.4 keV; 119Sn(γ, γ), E=23.87 keV; calculated γ(θ) P-odd asymmetry; deduced electron-bridge mechanism role. Mossbauer spectroscopy, frozen-spin target.


1987RO11      Yad.Fiz. 45, 452 (1987)

S.V.Romanov, D.P.Grechukhin

On a Possible Measurement of the Weinberg Angle in the Pair Conversion of the 2s1/2 → 1s1/2 Transition in μ- Mesoatoms

ATOMIC PHYSICS, Mesic-Atoms Z=24-42; calculated pair-conversion transition strengths in μ-mesic atoms; deduced Weinberg angle estimation difficulties.


1986GR02      Yad.Fiz. 43, 375 (1986)

D.P.Grechukhin, S.V.Romanov, A.A.Soldatov

Space-Parity Breaking Effect in Conversion Channel of the 2s → 1s Transition of μ- Mesoatom

ATOMIC PHYSICS, Mesic-Atoms 4He, 6,7Li, 9Be, 10B, 12C, 14N, 16O, 20Ne, 23Na, 24Mg, 27Al, 28Si, 31P, 32S, 35Cl, 40Ar, 39K, 40Ca, 45Sc; calculated muonic atom transition space-parity breaking effects.


1985GR18      Zh.Eksp.Teor.Fiz. 89, 1105 (1985); Sov.Phys.JETP 62, 635 (1985)

D.P.Grechukhin, S.V.Romanov, A.A.Soldatov

The Possibility of Experimental Determination of the Weinberg Angle in the Conversion Channel of the μ- Muonic-Atom 2s → 1s Transition

ATOMIC PHYSICS, Mesic-Atoms 6,7Li, 9Be; calculated Weinberg angle in muonic atom conversion channel; deduced measurement accuracy percentage.


1984GR03      Yad.Fiz. 39, 48 (1984)

D.P.Grechukhin, S.V.Romanov

Estimation of the Contribution given by the Polarization Mechanism of Parity Nonconservation to Mixing of 2s- and 2p-Muonic Orbits in Light μ Mesoatoms

ATOMIC PHYSICS, Mesic-Atoms 19F, 20,21Ne, 23Na; calculated mesic 2s-state parity nonconservation polarization mechanism.


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