NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = M.Kagarlis Found 21 matches. 2005BO22 Nucl.Phys. A755, 507c (2005) J.-L.Boyard, W.Augustyniak, R.Dahl, M.Drews, C.Ellegaard, L.Farhi, C.Gaarde, T.Hennino, J.A.Jensen, J.-C.Jourdain, M.Kagarlis, R.Kunne, J.S.Larsen, P.Radvanyi, B.Ramstein, M.Roy-Stephan, P.Zupranski Coherent pion production in heavy ion charge exchange reactions NUCLEAR REACTIONS 12C(3He, tπ+), E=2 GeV; 12C(12C, 12Nπ-), E=1.1 GeV/nucleon; measured σ(E, θ).
doi: 10.1016/j.nuclphysa.2005.03.064
2001MA91 Phys.Rev. C64, 064001 (2001) L.V.Malinina, G.D.Alkhazov, W.Augustyniak, M.Boivin, J.-L.Boyard, R.Dahl, M.Drews, C.Ellegaard, L.Farhi, C.Gaarde, T.Hennino, J.C.Jourdain, M.Kagarlis, A.V.Kravtsov, R.Kunne, J.S.Larsen, P.Morsch, V.A.Mylnikov, E.M.Orichtchin, C.F.Perdrisat, N.M.Piskunov, A.N.Prokofiev, V.Punjabi, P.Radvanyi, B.Ramstein, B.V.Razmyslovich, M.Roy-Stephan, I.M.Sitnik, M.Skousen, E.A.Strokovsky, I.I.Tkach, E.Tomasi-Gustafsson, S.S.Volkov, A.A.Zhdanov, P.Zupranski Analyzing Power of Inelastic dp Scattering in the Energy Region of Δ and Roper Resonances Excitation NUCLEAR REACTIONS 1H(polarized d, dπ+), (polarized d, dπ0), (polarized d, dπX), E at 3.73 GeV/c; measured tensor and vector analyzing powers. Comparisons with previous results.
doi: 10.1103/PhysRevC.64.064001
2000BO47 Acta Phys.Pol. B31, 2139 (2000) J.L.Boyard, L.Farhi, T.Hennino, J.C.Jourdain, R.Kunne, P.Radvanyi, B.Ramstein, M.Roy-Stephan, R.Dahl, M.Drews, C.Ellegaard, C.Gaarde, J.Jensen, J.Larsen, M.Skousen, M.A.Kagarlis, W.Augustyniak, P.Zupranski Exploring the Collective Spin-Isospin Longitudinal Response of Nuclei with Coherent Pion Production in (3He, tπ+) NUCLEAR REACTIONS 12C, 40Ca, 208Pb(3He, tπ+), E=2 GeV; measured coherent pion production σ(θ), excitation energy spectra.
1999KA38 Phys.Rev. C60, 025203 (1999) M.A.Kagarlis, Z.Papandreou, G.M.Huber, G.J.Lolos, A.Shinozaki, E.J.Brash, F.Farzanpay, M.Iurescu, A.Weinerman, G.Garino, K.Maruyama, O.Konno, K.Maeda, T.Terasawa, H.Yamazaki, T.Emura, H.Hirosawa, K.Niwa, H.Yamashita, S.Endo, K.Miyamoto, Y.Sumi, A.Leone, R.Perrino, T.Maki, A.Sasaki, J.C.Kim, and the TAGX Collaboration Subthreshold ρ0 Photoproduction on 3He NUCLEAR REACTIONS 3He(γ, π+π-X), E=800-1120 MeV; measured dipion invariant mass, opening angle, missing mass; deduced π0 mass shift due to medium effects. Tagged photon beam. Comparison with model predictions.
doi: 10.1103/PhysRevC.60.025203
1997KA52 Phys.Lett. 408B, 12 (1997) Virtual Pion Scattering NUCLEAR REACTIONS 12C, 40Ca(p, π+n), E=800 MeV; 12C(3He, tπ+), E=2 GeV; calculated σ(E, θ); deduced reaction mechanism, pion rescattering role. Coupled-channel model, rescattering optical potential.
doi: 10.1016/S0370-2693(97)00773-9
1997SA43 Phys.Rev. C56, 1500 (1997) H.Sarafian, M.A.Kagarlis, M.B.Johnson Klein-Gordon Equation in a Coupled Channels Description of Elastic and Inelastic Scattering
doi: 10.1103/PhysRevC.56.1500
1996FA27 Acta Phys.Pol. B27, 3035 (1996) L.Farhi, M.Roy-Stephan, W.Augustiniak, J.L.Boyard, R.Dahl, C.Ellegaard, C.Gaarde, T.Hennino, J.C.Jourdain, M.Kagarlis, J.S.Larsen, P.Radvanyi, B.Ramstein, M.Skousen, P.Zupranski Coherent Production of Pions in Nuclei with (3He, t) Charge Exchange Reaction at 2 GeV
1996RA49 Acta Phys.Pol. B27, 3229 (1996) B.Ramstein, S.Rousteau, T.Hennino, J.L.Boyard, R.Dahl, C.Ellegaard, C.Gaarde, J.Gosset, J.C.Jourdain, M.Kagarlis, J.S.Larsen, M.C.Lemaire, D.L'Hote, H.P.Morsch, M.Osterlund, P.Radvanyi, M.Roy-Stephan, T.Sams, M.Skousen, W.Spang, P.Zupranski Δ Production and Propagation in Nuclei
1995HU09 Phys.Rev. C51, 3169 (1995) P.Hui, H.T.Fortune, M.A.Kagarlis, J.M.O'Donnell, A.R.Fazely, R.Gilman, S.Mordechai, D.L.Watson Pion Double Charge Exchange on the Even Selenium Isotopes NUCLEAR REACTIONS 76,78,80,82Se(π+, π-), E=293.2 MeV; measured σ(θ, E(π-)). Model comparison.
doi: 10.1103/PhysRevC.51.3169
1995KA15 Phys.Rev. C51, 2829 (1995) Inelastic K+-Nucleus Scattering NUCLEAR REACTIONS 12C(K+, K+), (K+, K+'), E at 500, 800 MeV/c; analyzed σ(θ). Coupled-channels approach.
doi: 10.1103/PhysRevC.51.2829
1995KA49 Ann.Phys.(New York) 240, 56 (1995) M.A.Kagarlis, M.B.Johnson, H.T.Fortune A Microscopic, Coupled-Channel Theory of Pion Scattering NUCLEAR REACTIONS 14C(π+, π0), (π+, π-), 16O(π+, π-), E=50-300 MeV; 12C(π+, π+), E=180 MeV; calculated σ(θ). Microscopic coupled-channels theory.
doi: 10.1006/aphy.1995.1042
1995SI01 Phys.Rev. C51, 665 (1995) J.D.Silk, M.Burlein, H.T.Fortune, E.Insko, M.Kagarlis, P.H.Kutt, J.M.O'Donnell, J.D.Zumbro, J.A.Faucett, R.Garnett, M.W.Rawool-Sullivan, C.L.Morris, S.Saini Nonanalog 40,44Ca(π+, π-)40,44Ti(g.s.) Reactions at Low Energy NUCLEAR REACTIONS 40,44Ca(π+, π-), E=32-79.26 MeV; measured σ(θ); deduced core polarization, cross shell transitions role.
doi: 10.1103/PhysRevC.51.665
1994KA30 Phys.Rev.Lett. 73, 38 (1994) A Theory of Low-Energy Pion Double Charge Exchange NUCLEAR REACTIONS 14C(π+, π-), E ≤ 80 MeV; calculated σ(θ); deduced no dibaryon role evidence. Coupled-channels approach.
doi: 10.1103/PhysRevLett.73.38
1994SM05 Phys.Rev. C50, 1216 (1994) D.A.Smith, H.T.Fortune, D.R.Benton, J.M.O'Donnell, M.A.Kagarlis, S.Mordechai, K.Johnson, H.Ward Double Analog State in Odd-A Nuclei NUCLEAR REACTIONS 51V, 59Co, 115In, 197Au(π+, π-), E=295 MeV; measured pion spectra, double IAS excitation σ(θ).
doi: 10.1103/PhysRevC.50.1216
1993GI03 Phys.Rev. C48, 366 (1993) R.Gilman, H.T.Fortune, M.Kagarlis Sequential Contribution to Nonanalog Pion Double Charge Exchange in the Δ33 Resonance Region NUCLEAR REACTIONS 12C, 16,18O, 24Mg(π+, π-), E=100-300 MeV; calculated σ(θ); deduced nonanalog double charge exchange mechanism related features.
doi: 10.1103/PhysRevC.48.366
1993GR03 Phys.Rev. C47, 1466 (1993) Y.Grof, N.Auerbach, D.Benton, H.T.Fortune, K.Johnson, M.A.Kagarlis, G.Kahrimanis, S.Mordechai, C.L.Morris, J.M.O'Donnell, I.Orion, D.Saunders, D.A.Smith, H.Ward, C.F.Moore Double Giant Resonances in Pion Double Charge Exchange on 51V, 115In, and 197Au NUCLEAR REACTIONS 51V, 115In, 197Au(π+, π-), E=295 MeV; measured σ(θ, E(π)), σ(θ). 51Mn, 197Tl, 115Sb deduced GDR, double IAS excitation, Γ.
doi: 10.1103/PhysRevC.47.1466
1993KA03 Phys.Rev. C47, 1219 (1993) M.A.Kagarlis, H.T.Fortune, P.Hui, S.Loe, D.A.Smith, A.L.Williams, J.Urbina Double Charge Exchange in 93Nb(π+, π-)93Tc at T(π) = 164, 230, and 294 MeV NUCLEAR REACTIONS 93Nb(π+, π-), E=164-294 MeV; measured spectra, σ(θ). 93Tc deduced levels, double IAS excitation.
doi: 10.1103/PhysRevC.47.1219
1993RO30 Acta Phys.Pol. B24, 1747 (1993) S.Rousteau, T.Hennino, B.Ramstein, J.L.Boyard, C.Ellegaard, C.Gaarde, J.Gosset, J.C.Jourdain, M.Kagarlis, J.S.Larsen, M.C.Lemaire, D.L'Hote, H.P.Morsch, M.Osterlund, J.Poitou, P.Radvanyi, M.Roy-Stephan, T.Sams, P.Zupranski Δ Resonance Decay and Absorption in Nuclei NUCLEAR REACTIONS 1,2H, 12C, 208Pb(3He, tX), E=2 GeV; measured 2p-event missing energy spectrum, energy transfer spectra; deduced Δ-resonance decay features, absorption mechanism.
1992KA03 Phys.Rev. C45, 1351 (1992) Single-Step and Coupled-Channels Calculations of Pion Inelastic Scattering NUCLEAR REACTIONS 39K, 44Ca(π+, π+), 39K(π-, π-), E not given; calculated σ(θ). Code comparison, single-step, coupled-channels calculations. Vibrational, rotational collective models. NUCLEAR STRUCTURE 39K, 44Ca; calculated neutron, proton multipole matrix elements. Vibrational, rotational collective models.
doi: 10.1103/PhysRevC.45.1351
1991MO02 Phys.Rev. C43, 1111 (1991) S.Mordechai, C.L.Morris, J.M.O'Donnell, M.A.Kagarlis, D.Fink, H.T.Fortune, D.L.Watson, R.Gilman, H.Ward, A.Williams, S.H.Yoo, C.F.Moore Analog of the T(>) Giant Dipole Resonance in Light Nuclei NUCLEAR REACTIONS 13C, 27Al, 59Co(π+, π-), E=292 MeV; measured σ(θ(π), E(π)). 13O, 27P, 59Cu deduced giant resonances, Γ, T.
doi: 10.1103/PhysRevC.43.1111
1991MO05 Phys.Rev. C43, R1509 (1991) S.Mordechai, H.Ward, K.Johnson, G.Kahrimanis, D.Saunders, C.F.Moore, J.M.O'Donnell, M.A.Kagarlis, D.Smith, H.T.Fortune, C.L.Morris Comparison of the Double Giant-Dipole States Observed in (π-, π+) and (π+, π-) Reactions on 40Ca and 27Al NUCLEAR REACTIONS 27Al, 40Ca(π-, π+), (π+, π-), E=295 MeV; measured σ(θ(π), E(π)); deduced σ(ratio). 27Na, 27P, 40Ar, 40Ti deduced double isovector GDR.
doi: 10.1103/PhysRevC.43.R1509
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