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NSR database version of April 27, 2024.

Search: Author = M.Oikawa

Found 11 matches.

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2005SA37      Phys.Rev. C 71, 064313 (2005)

T.Saito, K.Yoshida, M.Oikawa, Y.Suga, K.Kino, T.Nakagawa, T.Tohei, K.Abe, H.Ueno

Direct evidence of core excitation in the giant resonance through the (e, e'n) reaction

NUCLEAR REACTIONS 40Ca(e, e'n), E=129 MeV; measured En, missing energy spectra, angular correlations, σ(E, θ); 12C, 28Si(e, e'n), E not given; analyzed data; deduced core excitation in giant resonance.

doi: 10.1103/PhysRevC.71.064313
Citations: PlumX Metrics


2002KI01      Phys.Rev. C65, 024604 (2002)

K.Kino, T.Saito, Y.Suga, M.Oikawa, T.Nakagawa, T.Tohei, K.Abe, H.Ueno

Measurement of the Angular Correlations for the 16O(e, e'n)15O Reaction in the Giant Resonance Region

NUCLEAR REACTIONS 16O(e, e'n), E=129 MeV; measured missing energy spectra, σ(θ), angular correlations; deduced GDR contribution. Comparison with RPA predictions.

doi: 10.1103/PhysRevC.65.024604
Citations: PlumX Metrics


2002TA19      Phys.Rev. C66, 014605 (2002)

K.Takahisa, T.Saito, S.Suzuki, C.Takakuwa, M.Oikawa, T.Nakagawa, T.Tohei, K.Abe

Reaction Mechanism for 12C(e, e'n)11C in the Continuum Above the Giant Resonance

NUCLEAR REACTIONS 12C(e, e'n), E=129 MeV; measured electron and neutron spectra, σ(θ), angular correlations; deduced reaction mechanism features. Comparison with RPA and Hartree-Fock predictions.

doi: 10.1103/PhysRevC.66.014605
Citations: PlumX Metrics


2000OI01      Phys.Rev.Lett. 84, 2338 (2000)

M.Oikawa, T.Saito, K.Takahisa, Y.Suga, K.Kino, T.Nakagawa, T.Tohei, K.Abe, H.Ueno

Out of Plane Measurements of the Decay Neutron from the Giant Resonance in the 12C(e, e'n)11C Reaction

NUCLEAR REACTIONS 12C(e, e'n), E=126 MeV; measured out-of-plane σ(θ, φ), angular correlations; deduced longitudinal, transverse components.

doi: 10.1103/PhysRevLett.84.2338
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1998YO11      Res.Rep.Lab.Nucl.Sci., Tohoku Univ. 31, 1 (1998)

K.Yoshida, T.Saito, M.Oikawa, T.Endo, K.Kino, K.Takahashi, T.Nakagawa, K.Abe, H.Ueno

Study of the Giant Resonance by the 40Ca(e, e'n)39Ca Reaction

NUCLEAR REACTIONS 40Ca(e, e'n), E=28-35 MeV; measured excitation energy, σ(θ).


1997SA17      Phys.Rev.Lett. 78, 1018 (1997)

T.Saito, S.Suzuki, K.Takahisa, C.Takakuwa, M.Oikawa, T.Tohei, T.Nakagawa, K.Abe

Angular Correlations for the 12C(e, e'n)11C Reaction in the Giant Resonance Region

NUCLEAR REACTIONS 12C(e, e'n), E=150 MeV; measured σ(θ(e), θ(n)) vs energy transfer, missing energy spectra. RPA analysis.

doi: 10.1103/PhysRevLett.78.1018
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1996AR14      Phys.Rev. C54, 3294 (1996)

J.D.T.Arruda-Neto, T.Saito, M.Sugawara, T.Tamae, H.Miyase, K.Abe, O.Konno, M.Oikawa, S.Simionatto, M.L.Yoneama, J.F.Dias, A.Deppman, B.S.Bhandari, V.P.Likhachev, A.C.S.Lima

Photoexcitation Mechanisms Investigated Through the Fission Channel

NUCLEAR REACTIONS 182W, 197Au, Ta(e, F), E not given; analyzed fission data; deduced σ(γ, F), compound nucleus excitation energy delineation related features.

doi: 10.1103/PhysRevC.54.3294
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1995AR03      Phys.Rev. C51, R452 (1995)

J.D.T.Arruda-Neto, T.Saito, M.Sugawara, T.Tamae, H.Miyase, K.Abe, O.Konno, M.Oikawa, A.Deppman, S.Simionatto, E.M.L.Macedo, B.S.Bhandari

Photofission of 182W following Reabsorption of Photopions

NUCLEAR REACTIONS 182W(e, F), E=80-180 MeV; measured fission σ(E); deduced σ(γ, F), pion reabsorption σ. Enriched targets.

doi: 10.1103/PhysRevC.51.R452
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetM0773.


1994AR01      J.Phys.(London) G20, 197 (1994)

J.D.T.Arruda-Neto, T.Saito, M.Sugawara, T.Tamae, H.Miyase, K.Abe, K.Takahisa, O.Konno, M.Oikawa, S.Simionatto

Observation of Fine Thermalization Effects in the Electrofission of Preactinde Nuclei

NUCLEAR REACTIONS 197Au, Ta(e, F), E=40-250 MeV; measured fission σ; deduced photofission σ, thermalization process features.

doi: 10.1088/0954-3899/20/1/019
Citations: PlumX Metrics


1994AR12      Phys.Rev. C50, 282 (1994)

J.D.T.Arruda-Neto, T.Saito, M.Sugawara, T.Tamae, H.Miyase, K.Abe, K.Takahisa, O.Konno, M.Oikawa, A.Deppman, S.Simionatto

Thermalizatioon Related Effects in the Electrofission of Preactinide Nuclei

NUCLEAR REACTIONS 197Au, Ta(e, F), E=40-250 MeV; measured fission σ(E); deduced photofission σ. Intranuclear cascade model analysis.

doi: 10.1103/PhysRevC.50.282
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1993AR10      Phys.Rev. C48, 1594 (1993)

J.D.T.Arruda-Neto, T.Saito, M.Sugawara, T.Tamae, H.Miyase, K.Abe, K.Takahisa, O.Konno, M.Oikawa, S.Simionatto

Observation of Pion-Related Effects in the Photofission of Preactinide Nuclei

NUCLEAR REACTIONS 197Au, Ta(e, F), E=25-180 MeV; measured absolute fission σ(E); deduced photofission σ, photofissility. Natural targets.

doi: 10.1103/PhysRevC.48.1594
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