References quoted in the ENSDF dataset: 32AR 32S(PI+,PI-)
9 references found.
Clicking on a keynumber will list datasets that reference the given article.
Phys.Rev. C22, 1180 (1980)
G.R.Burleson, G.S.Blanpied, G.H.Daw, A.J.Viescas, C.L.Morris, H.A.Thiessen, S.J.Greene, W.J.Braithwaite, W.B.Cottingame, D.B.Holtkamp, I.B.Moore, C.F.Moore
Isospin Quintets in the 1p and s-d Shells
NUCLEAR REACTIONS 9Be, 12,13C, 16O, 24Mg, 32S(π+, π-), E=180 MeV; measured σ(θ), Q. 12O, 16Ne, 24Si, 32Ar deduced masses. Isobaric multiplet mass equation fit.
Phys.Lett. 128B, 157 (1983)
L.C.Bland, R.Gilman, M.Carchidi, K.Dhuga, C.L.Morris, H.T.Fortune, S.J.Greene, P.A.Seidl, C.F.Moore
Systematics of Pion Double-Charge-Exchange Reactions on T = 0 Nuclei
NUCLEAR REACTIONS 12C, 24Mg, 28Si, 32S, 40Ca(π+, π-), E=120-210 MeV; measured σ(θ=5°) vs E; deduced charge exchange reaction systematics.
doi: 10.1016/0370-2693(83)90380-5
Phys.Rev. C32, 999 (1985)
S.Mordechai, P.A.Seidl, C.F.Moore, L.C.Bland, R.Gilman, K.S.Dhuga, H.T.Fortune, C.L.Morris, S.J.Greene
Systematics of Continuum Pion Double Charge Exchange on T = 0 Nuclei
NUCLEAR REACTIONS 12C, 24Mg, 28Si, 32S, 40Ca(π+, π-), E=120-210 MeV; measured σ(θ, E(π)). 12C, 40Ca(π+, π-), E=164 MeV; measured σ(θ); deduced target mass, E(π), excitation energy dependences. 12O, 40Ti deduced nonanalog transition excitation.
Nucl.Phys. A459, 488 (1986)
C.R.Ching, T.E.O.Ericson, T.H.Ho, W.Q.Zhao
A Comparison of πΔ Interaction Mechanism with the Double Charge Exchange Experimental Data on Self-Conjugate Nuclei
NUCLEAR REACTIONS 12C, 40Ca(π+, π-), E=164 MeV; 16O(π+, π-), E=120, 164, 200 MeV; calculated σ(θ). 12C, 16O, 24Mg, 28Si, 32S, 40Ca(π+, π-), E=100-220 MeV; 16O(π+, π-), E ≈ 100-300 MeV; calculated σ(θ) vs E; deduced Δ-π interaction role, mass dependence.
doi: 10.1016/0375-9474(86)90157-0
Nucl.Phys. A451, 735 (1986)
H.T.Fortune, L.C.Bland, C.L.Morris, C.F.Moore
Disentangling N, A Dependence of Non-Analog Double Charge Exchange
NUCLEAR REACTIONS 12C, 16O, 24Mg, 28Si, 32S, 40Ca(π+, π-), E=120-210 MeV; analyzed σ(θ=5°); deduced neutron, mass dependences.
doi: 10.1016/0375-9474(86)90302-7
Phys.Rev. C34, 1895 (1986)
R.Gilman, H.T.Fortune, M.B.Johnson, E.R.Siciliano, H.Toki, A.Wirzba, B.A.Brown
Nuclear-Structure Aspects of Nonanalog Pion Double Charge Exchange
NUCLEAR REACTIONS 12C, 16O, 24Mg, 28Si, 32S, 40,44Ca, 56Fe(π+, π-), E=100-300 MeV; calculated σ(θ) vs E. Nonanalog double charge exchange.
Phys.Rev.Lett. 61, 531 (1988)
S.Mordechai, N.Auerbach, M.Burlein, H.T.Fortune, S.J.Greene, C.F.Moore, C.L.Morris, J.M.O'Donnell, M.W.Rawool, J.D.Silk, D.L.Watson, S.H.Yoo, J.D.Zumbro
Pion Double Charge Exchange to the Double Dipole Resonance
NUCLEAR REACTIONS 32S(π+, π-), E=292 MeV; measured σ(θ(π), E(π)). 32Ar deduced resonances, Γ.
doi: 10.1103/PhysRevLett.61.531
Phys.Rev. C43, 1318 (1991)
D.L.Watson, R.Gilman, C.L.Morris, J.D.Zumbro, S.Mordechai, M.Burlein, J.M.O'Donnell, H.T.Fortune, A.Kotwal, J.Puttz, J.D.Silk, J.S.McDonald, C.F.Moore, A.L.Williams, S.Y.Yoo
Pion-Induced Double Charge Exchange on 12C, 24Mg, 32S, and 40Ca
NUCLEAR REACTIONS 12C, 24Mg, 32S, 40Ca(π+, π-), E=164 MeV; measured σ(θ). Isobar-nucleon interaction mechanism.
Int.J.Mod.Phys. E3, 39 (1994)
S.Mordechai, C.F.Moore
Double Giant Resonances
NUCLEAR REACTIONS 12,13C, 27Al, 32S, 40Ca, 51V, 56Fe, 59Co, 80Se, 93Nb, 115In, 138Ba, 197Au, 208Pb(π+, π-), E=295 MeV; compiled, reviewed σ(θ), other data, analyses; deduced GDR excitation, associated exotic vibrational modes evidence.
doi: 10.1142/S0218301394000036