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NSR database version of April 11, 2024.

Search: Author = J.M.Finn

Found 63 matches.

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2021SU25      Nat.Phys. 17, 687 (2021), Erratum Nat.Phys. 18, 473 (2022)

V.Sulkosky, C.Peng, J.Chen, A.Deur, S.Abrahamyan, K.A.Aniol, D.S.Armstrong, T.Averett, S.L.Bailey, A.Beck, P.Bertin, F.Butaru, W.Boeglin, A.Camsonne, G.D.Cates, C.-C.Chang, S.Choi, E.Chudakov, L.Coman, J.C.Cornejo, B.Craver, F.Cusanno, R.De Leo, C.W.de Jager, J.D.Denton, S.Dhamija, R.Feuerbach, J.M.Finn, S.Frullani, K.Fuoti, H.Gao, F.Garibaldi, O.Gayou, R.Gilman, A.Glamazdin, C.Glashausser, J.Gomez, J.-O.Hansen, D.Hayes, F.W.Hersman, D.W.Higinbotham, T.Holmstrom, T.B.Humensky, C.E.Hyde, H.Ibrahim, M.Iodice, X.Jiang, L.J.Kaufman, A.Kelleher, K.E.Keister, W.Kim, A.Kolarkar, N.Kolb, W.Korsch, K.Kramer, G.Kumbartzki, L.Lagamba, V.Laine, G.Laveissiere, J.J.Lerose, D.Lhuillier, R.Lindgren, N.Liyanage, H.-J.Lu, B.Ma, D.J.Margaziotis, P.Markowitz, K.R.McCormick, M.Meziane, Z.-E.Meziani, R.Michaels, B.Moffit, P.Monaghan, S.Nanda, J.Niedziela, M.Niskin, R.Pandolfi, K.D.Paschke, M.Potokar, A.Puckett, V.A.Punjabi, Y.Qiang, R.D.Ransome, B.Reitz, R.Roche, A.Saha, A.Shabetai, S.Sirca, J.T.Singh, K.Slifer, R.Snyder, P.Solvignon, R.Stringer, R.Subedi, W.A.Tobias, N.Ton, P.E.Ulmer, G.M.Urciuoli, A.Vacheret, E.Voutier, K.Wang, L.Wan, B.Wojtsekhowski, S.Woo, H.Yao, J.Yuan, X.Zhan, X.Zheng, L.Zhu

Measurement of the generalized spin polarizabilities of the neutron in the low-Q2 region

NUCLEAR REACTIONS 3He(polarized e-, e-), E=1.1-4.4 GeV; measured reaction products, Eβ, Iβ. 1NN; deduced transverse-transverse and longitudinal-transverse interference σ, generalized neutron spin polarizabilities. Comparison with chiral effective field theory calculations.

doi: 10.1038/s41567-021-01245-9
Citations: PlumX Metrics


2006HU09      Phys.Rev. C 73, 064004 (2006)

B.Hu, M.K.Jones, P.E.Ulmer, H.Arenhovel, O.K.Baker, W.Bertozzi, E.J.Brash, J.Calarco, J.-P.Chen, E.Chudakov, A.Cochran, S.Dumalski, R.Ent, J.M.Finn, F.Garibaldi, S.Gilad, R.Gilman, C.Glashausser, J.Gomez, V.Gorbenko, J.-O.Hansen, J.Hovdebo, C.W.de Jager, S.Jeschonnek, X.Jiang, C.Keppel, A.Klein, A.Kozlov, S.Kuhn, G.Kumbartzki, M.Kuss, J.J.LeRose, M.Liang, N.Liyanage, G.J.Lolos, P.E.C.Markowitz, D.Meekins, R.Michaels, J.Mitchell, Z.Papandreou, C.F.Perdrisat, V.Punjabi, R.Roche, D.Rowntree, A.Saha, S.Strauch, L.Todor, G.Urciuoli, L.B.Weinstein, K.Wijesooriya, B.B.Wojtsekhowski, R.Woo

Polarization transfer in the 2H(e(pol), e'p(pol))n reaction up to Q2 = 1.61 (GeV/c)2

NUCLEAR REACTIONS 1,2H(polarized e, e'p), E=1.669 GeV; measured recoil proton polarization vs momentum transfer, missing momentum; deduced form factor ratios. Comparison with model predictions.

doi: 10.1103/PhysRevC.73.064004
Citations: PlumX Metrics


2006MA08      Nucl.Phys. A764, 261 (2006)

G.MacLachlan, A.Aghalaryan, A.Ahmidouch, B.D.Anderson, R.Asaturyan, O.Baker, A.R.Baldwin, D.Barkhuff, H.Breuer, R.Carlini, E.Christy, S.Churchwell, L.Cole, E.Crouse, S.Danagoulian, D.Day, T.Eden, M.Elaasar, R.Ent, M.Farkhondeh, H.Fenker, J.M.Finn, L.Gan, K.Garrow, P.Gueye, C.R.Howell, B.Hu, M.K.Jones, J.J.Kelly, C.Keppel, M.Khandaker, W.-Y.Kim, S.Kowalski, A.Lai, A.Lung, D.Mack, R.Madey, D.M.Manley, P.Markowitz, J.Mitchell, H.Mkrtchyan, A.K.Opper, B.Plaster, C.Perdrisat, V.Punjabi, B.Raue, T.Reichelt, J.Reinhold, J.Roche, Y.Sato, N.Savvinov, A.Yu.Semenov, I.A.Semenova, W.Seo, N.Simicevic, G.Smith, S.Taylor, S.Stepanyan, V.Tadevosyan, S.Tajima, L.Tang, W.Tireman, P.E.Ulmer, W.Vulcan, J.W.Watson, S.P.Wells, F.Wesselmann, S.Wood, C.Yan, C.Yan, S.Yang, L.Yuan, W.-M.Zhang, H.Zhu, X.Zhu

The ratio of proton electromagnetic form factors via recoil polarimetry at Q2=1.13 (GeV/c)2

NUCLEAR REACTIONS 1H(polarized e, e'p), E=2329 MeV; measured recoil proton spectra, polarization. 1H deduced ratio of electromagnetic form factors.

doi: 10.1016/j.nuclphysa.2005.09.012
Citations: PlumX Metrics


2005KR14      Phys.Rev.Lett. 95, 142002 (2005)

K.Kramer, D.S.Armstrong, T.D.Averett, W.Bertozzi, S.Binet, C.Butuceanu, A.Camsonne, G.D.Cates, J.-P.Chen, S.Choi, E.Chudakov, F.Cusanno, A.Deur, P.Djawotho, D.Dutta, J.M.Finn, H.Gao, F.Garibaldi, O.Gayou, R.Gilman, A.Glamazdin, V.Gorbenko, K.A.Griffioen, J.-O.Hansen, D.W.Higinbotham, W.Hinton, T.Horn, C.W.de Jager, X.Jiang, W.Korsch, J.LeRose, D.Lhuillier, N.Liyanage, D.J.Margaziotis, K.McCormick, Z.-E.Meziani, R.Michaels, B.Milbrath, B.Moffit, S.Nanda, C.F.Perdrisat, R.Pomatsalyuk, V.Punjabi, B.Reitz, J.Roche, R.Roche, M.Roedelbronn, N.Savvinov, J.Secrest, J.Singh, S.Sirca, K.Slifer, P.Solvignon, D.J.Steiner, R.Suleiman, V.Sulkosky, A.Tobias, A.Vacheret, Y.Xiao, X.Zheng, J.Zhou, L.Zhu, X.Zhu, P.A.Zolnierczuk

Q2 Dependence of the Neutron Spin Structure Function gn2 at Low Q2

NUCLEAR REACTIONS 3He(polarized e, e'), E=3.465-5.727 GeV; measured parallel and perpendicular cross section differences. 1n, 3He deduced momentum transfer dependence of spin structure function.

doi: 10.1103/PhysRevLett.95.142002
Citations: PlumX Metrics


2004FI12      Fizika(Zagreb) B 13, 545 (2004)

J.M.Finn, for the Jefferson Laboratory E93038 Collaboration

Measurements of the electric form factor of the neutron at JLab via recoil polarimetry in the reaction d(e(pol), e'n(pol))

NUCLEAR REACTIONS 2H(polarized e, e'n), E=high; measured asymmetry, polarization transfer. 1n deduced electric form factor. Comparison with previous work.


2003MA36      Eur.Phys.J. A 17, 323 (2003)

R.Madey, A.Yu.Semenov, S.Taylor, A.Aghalaryan, E.Crouse, G.MacLachlan, B.Plaster, S.Tajima, W.Tireman, C.Yan, A.Ahmidouch, B.D.Anderson, H.Arenhovel, R.Asaturyan, O.Baker, A.R.Baldwin, H.Breuer, R.Carlini, E.Christy, S.Churchwell, L.Cole, S.Danagoulian, D.Day, M.Elaasar, R.Ent, M.Farkhondeh, H.Fenker, J.M.Finn, L.Gan, K.Garrow, P.Gueye, C.Howell, B.Hu, M.K.Jones, J.J.Kelly, C.Keppel, M.Khandaker, W.-Y.Kim, S.Kowalski, A.Lung, D.Mack, D.M.Manley, P.Markowitz, J.Mitchell, H.Mkrtchyan, A.Opper, C.Perdrisat, V.Punjabi, B.Raue, T.Reichelt, J.Reinhold, J.Roche, Y.Sato, I.A.Semenova, W.Seo, N.Simicevic, G.Smith, S.Stepanyan, V.Tadevosyan, L.Tang, P.Ulmer, W.Vulcan, J.W.Watson, S.Wells, F.Wesselmann, S.Wood, C.Yan, S.Yang, L.Yuan, W.-M.Zhang, H.Zhu, X.Zhu

Neutron electric form factor up to Q2 = 1.47 (GeV/c)2

NUCLEAR REACTIONS 2H(polarized e, e'n), E=0.844-3.395 GeV; measured neutron spectra, polarization. 1n deduced form factors.

doi: 10.1140/epja/i2002-10169-6
Citations: PlumX Metrics


2003ST13      Phys.Rev.Lett. 91, 052301 (2003)

S.Strauch, S.Dieterich, K.A.Aniol, J.R.M.Annand, O.K.Baker, W.Bertozzi, M.Boswell, E.J.Brash, Z.Chai, J.-P.Chen, M.E.Christy, E.Chudakov, A.Cochran, R.De Leo, R.Ent, M.B.Epstein, J.M.Finn, K.G.Fissum, T.A.Forest, S.Frullani, F.Garibaldi, A.Gasparian, O.Gayou, S.Gilad, R.Gilman, C.Glashausser, J.Gomez, V.Gorbenko, P.L.J.Gueye, J.O.Hansen, D.W.Higinbotham, B.Hu, C.E.Hyde-Wright, D.G.Ireland, C.Jackson, C.W.de Jager, X.Jiang, C.Jones, M.K.Jones, J.D.Kellie, J.J.Kelly, C.E.Keppel, G.Kumbartzki, M.Kuss, J.J.LeRose, K.Livingston, N.Liyanage, S.Malov, D.J.Margaziotis, D.Meekins, R.Michaels, J.H.Mitchell, S.K.Nanda, J.Nappa, C.F.Perdrisat, V.A.Punjabi, R.D.Ransome, R.Roche, G.Rosner, M.Rvachev, F.Sabatie, A.Saha, A.Sarty, J.M.Udias, P.E.Ulmer, G.M.Urciuoli, J.F.J.van den Brand, J.R.Vignote, D.P.Watts, L.B.Weinstein, K.Wijesooriya, B.Wojtsekhowski

Polarization Transfer in the 4He(e(pol), e'p(pol))3H Reaction up to Q2=2.6 (GeV/c)2

NUCLEAR REACTIONS 4He(polarized e, e'p), E=3400, 4237, 4239 MeV; measured polarization transfer; deduced medium modification effects. Comparison with model predictions.

doi: 10.1103/PhysRevLett.91.052301
Citations: PlumX Metrics


2003XU02      Phys.Rev. C 67, 012201 (2003)

W.Xu, B.Anderson, L.Auberbach, T.Averett, W.Bertozzi, T.Black, J.Calarco, L.Cardman, G.D.Cates, Z.W.Chai, J.P.Chen, S.Choi, E.Chudakov, S.Churchwell, G.S.Corrado, C.Crawford, D.Dale, A.Deur, P.Djawotho, T.W.Donnelly, D.Dutta, J.M.Finn, H.Gao, R.Gilman, A.V.Glamazdin, C.Glashausser, W.Glockle, J.Golak, J.Gomez, V.G.Gorbenko, J.-O.Hansen, F.W.Hersman, D.W.Higinbotham, R.Holmes, C.R.Howell, E.Hughes, B.Humensky, S.Incerti, C.W.de Jager, J.S.Jensen, X.Jiang, C.E.Jones, M.Jones, R.Kahl, H.Kamada, A.Kievsky, I.Kominis, W.Korsch, K.Kramer, G.Kumbartzki, M.Kuss, E.Lakuriqi, M.Liang, N.Liyanage, J.LeRose, S.Malov, D.J.Margaziotis, J.W.Martin, K.McCormick, R.D.McKeown, K.McIlhany, Z.-E.Meziani, R.Michaels, G.W.Miller, J.Mitchell, S.Nanda, E.Pace, T.Pavlin, G.G.Petratos, R.I.Pomatsalyuk, D.Pripstein, D.Prout, R.D.Ransome, Y.Roblin, M.Rvachev, A.Saha, G.Salme, M.Schnee, T.Shin, K.Slifer, P.A.Souder, S.Strauch, R.Suleiman, M.Sutter, B.Tipton, L.Todor, M.Viviani, B.Vlahovic, J.Watson, C.F.Williamson, H.Witala, B.Wojtsekhowski, F.Xiong, J.Yeh, P.Zolnierczuk

Plane-wave impulse approximation extraction of the neutron magnetic form factor from quasielastic 3He(pol)(e(pol), e') at Q2 = 0.3 to 0.6 (GeV/c)2

NUCLEAR REACTIONS 3He(polarized e, e'), E=0.778, 1.727 GeV; measured transverse spin-dependent asymmetry. 1n deduced magnetic form factor. Polarized target.

doi: 10.1103/PhysRevC.67.012201
Citations: PlumX Metrics


2002UL01      Phys.Rev.Lett. 89, 062301 (2002)

P.E.Ulmer, K.A.Aniol, H.Arenhovel, J.-P.Chen, E.Chudakov, D.Crovelli, J.M.Finn, K.G.Fissum, O.Gayou, J.Gomez, J.-O.Hansen, C.W.de Jager, S.Jeschonnek, M.K.Jones, M.Kuss, J.J.LeRose, M.Liang, R.A.Lindgren, S.Malov, D.Meekins, R.Michaels, J.Mitchell, C.F.Perdrisat, V.Punjabi, R.Roche, F.Sabatie, A.Saha, R.Suleiman, L.Todor, B.B.Wojtsekhowski

2H(e, e'p)n Reaction at High Recoil Momenta

NUCLEAR REACTIONS 2H(e, e'p), E=3.110 GeV; measured Ep, σ vs recoil momentum. Comparison with model predictions.

doi: 10.1103/PhysRevLett.89.062301
Citations: PlumX Metrics


2001ME08      Phys.Rev.Lett. 86, 2963 (2001)

C.Mertz, C.E.Vellidis, R.Alarcon, D.H.Barkhuff, A.M.Bernstein, W.Bertozzi, V.Burkert, J.Chen, J.R.Comfort, G.Dodson, S.Dolfini, K.Dow, M.Farkhondeh, J.M.Finn, S.Gilad, R.W.Gothe, X.Jiang, K.Joo, N.I.Kaloskamis, A.Karabarbounis, J.J.Kelly, S.Kowalski, C.Kunz, R.W.Lourie, J.I.McIntyre, B.D.Milbrath, R.Miskimen, J.H.Mitchell, C.N.Papanicolas, C.F.Perdrisat, A.J.Sarty, J.Shaw, S.-B.Soong, D.Tieger, C.Tschalaer, W.Turchinetz, P.E.Ulmer, S.Van Verst, G.A.Warren, L.B.Weinstein, S.Williamson, R.J.Woo, A.Young

Search for Quadrupole Strength in the Electroexcitation of the Δ+(1232)

NUCLEAR REACTIONS 1H(e, e'π0), E=719, 799 MeV; measured recoil protons σ(φ), longitudinal-transverse asymmetry and response; deduced quadrupole strength in Δ resonance excitation.

doi: 10.1103/PhysRevLett.86.2963
Citations: PlumX Metrics


2001XI04      Phys.Rev.Lett. 87, 242501 (2001)

F.Xiong, D.Dutta, W.Xu, B.Anderson, L.Auberbach, T.Averett, W.Bertozzi, T.Black, J.Calarco, L.Cardman, G.D.Cates, Z.W.Chai, J.P.Chen, S.Choi, E.Chudakov, S.Churchwell, G.S.Corrado, C.Crawford, D.Dale, A.Deur, P.Djawotho, B.W.Filippone, J.M.Finn, H.Gao, R.Gilman, A.V.Glamazdin, C.Glashausser, W.Glockle, J.Golak, J.Gomez, V.G.Gorbenko, J.-O.Hansen, F.W.Hersman, D.W.Higinbotham, R.Holmes, C.R.Howell, E.Hughes, B.Humensky, S.Incerti, C.W.de Jager, J.S.Jensen, X.Jiang, C.E.Jones, M.Jones, R.Kahl, H.Kamada, A.Kievsky, I.Kominis, W.Korsch, K.Kramer, G.Kumbartzki, M.Kuss, E.Lakuriqi, M.Liang, N.Liyanage, J.LeRose, S.Malov, D.J.Margaziotis, J.W.Martin, K.McCormick, R.D.McKeown, K.McIlhany, Z.-E.Meziani, R.Michaels, G.W.Miller, E.Pace, T.Pavlin, G.G.Petratos, R.I.Pomatsalyuk, D.Pripstein, D.Prout, R.D.Ransome, Y.Roblin, M.Rvachev, A.Saha, G.Salme, M.Schnee, T.Shin, K.Slifer, P.A.Souder, S.Strauch, R.Suleiman, M.Sutter, B.Tipton, L.Todor, M.Viviani, B.Vlahovic, J.Watson, C.F.Williamson, H.Witala, B.Wojtsekhowski, J.Yeh, P.Zolnierczuk

Precision Measurement of the Spin-Dependent Asymmetry in the Threshold Region of 3He(pol)(e(pol), e')

NUCLEAR REACTIONS 3He(polarized e, e'), E=0.778, 1.727 GeV; measured spin-dependent asymmetry. Polarized target, comparison with model predictions.

doi: 10.1103/PhysRevLett.87.242501
Citations: PlumX Metrics


2000XU07      Phys.Rev.Lett. 85, 2900 (2000)

W.Xu, D.Dutta, F.Xiong, B.Anderson, L.Auberbach, T.Averett, W.Bertozzi, T.Black, J.Calarco, L.Cardman, G.D.Cates, Z.W.Chai, J.P.Chen, S.Choi, E.Chudakov, S.Churchwell, G.S.Corrado, C.Crawford, D.Dale, A.Deur, P.Djawotho, B.W.Filippone, J.M.Finn, H.Gao, R.Gilman, A.V.Glamazdin, C.Glashausser, W.Glockle, J.Golak, J.Gomez, V.G.Gorbenko, J.-O.Hansen, F.W.Hersman, D.W.Higinbotham, R.Holmes, C.R.Howell, E.Hughes, B.Humensky, S.Incerti, C.W.de Jager, J.S.Jensen, X.Jiang, C.E.Jones, M.Jones, R.Kahl, H.Kamada, A.Kievsky, I.Kominis, W.Korsch, K.Kramer, G.Kumbartzki, M.Kuss, E.Lakuriqi, M.Liang, N.Liyanage, J.LeRose, S.Malov, D.J.Margaziotis, J.W.Martin, K.McCormick, R.D.McKeown, K.McIlhany, Z.-E.Meziani, R.Michaels, G.W.Miller, E.Pace, T.Pavlin, G.G.Petratos, R.I.Pomatsalyuk, D.Pripstein, D.Prout, R.D.Ransome, Y.Roblin, M.Rvachev, A.Saha, G.Salme, M.Schnee, T.Shin, K.Slifer, P.A.Souder, S.Strauch, R.Suleiman, M.Sutter, B.Tipton, L.Todor, M.Viviani, B.Vlahovic, J.Watson, C.F.Williamson, H.Witala, B.Wojtsekhowski, J.Yeh, P.Zolnierczuk

Transverse Asymmetry AT' from the Quasielastic 3He(pol)(e(pol), e') Process and the Neutron Magnetic Form Factor

NUCLEAR REACTIONS 3He(polarized e, e'), E=0.778, 1.727 GeV; measured transverse asymmetry. 1n deduced magnetic form factor. Polarized target.

doi: 10.1103/PhysRevLett.85.2900
Citations: PlumX Metrics


1999BB08      Phys.Lett. 470B, 39 (1999)

D.H.Barkhuff, C.S.Armstrong, W.Bertozzi, J.P.Chen, D.Dale, G.Dodson, K.A.Dow, M.B.Epstein, M.Farkhondeh, J.M.Finn, S.Gilad, M.K.Jones, K.Joo, J.J.Kelly, S.Kowalski, D.Liu, R.W.Lourie, J.I.McIntyre, R.Madey, D.J.Margaziotis, P.Markowitz, C.Mertz, B.D.Milbrath, J.Mitchell, S.Mukhopadhyay, C.F.Perdrisat, V.Punjabi, L.Qin, P.M.Rutt, A.J.Sarty, D.Tieger, C.Tschalaer, W.Turchinetz, P.E.Ulmer, S.P.Van Verst, C.Vellidis, G.Warren, L.B.Weinstein, R.J.Woo

Measurement of Recoil Proton Polarizations in the Electrodisintegration of Deuterium by Polarized Electrons

NUCLEAR REACTIONS 2H(polarized e, e'p), E=579 MeV; measured recoil proton polarization. Quasielastic kinematics, comparison with model predictions.

doi: 10.1016/S0370-2693(99)01294-0
Citations: PlumX Metrics


1999MO02      Phys.Rev. C59, 221 (1999)

J.H.Morrison, H.Baghaei, W.Bertozzi, S.Gilad, J.Glickman, C.E.Hyde-Wright, N.Kalantar-Nayestanaki, R.W.Lourie, S.Penn, P.E.Ulmer, L.B.Weinstein, B.H.Cottman, L.Ghedira, E.J.Winhold, J.R.Calarco, J.Wise, P.Boberg, C.C.Chang, D.Zhang, K.Aniol, M.B.Epstein, D.J.Margaziotis, J.M.Finn, C.Perdrisat, V.Punjabi

Quasielastic 12C(e, e'p) Reaction at High Momentum Transfer

NUCLEAR REACTIONS 12C(e, e'p), E=696, 796 MeV; measured σ(θ(p), θ(e), E) vs missing energy; deduced relative importance of single- and multi-nucleon knockout, dependence on energy transfer.

doi: 10.1103/PhysRevC.59.221
Citations: PlumX Metrics


1998LO16      Phys.Rev.Lett. 81, 2832 (1998)

R.W.Lourie, J.M.Finn, J.I.McIntyre, B.D.Milbrath, C.F.Perdrisat, P.E.Ulmer

Lourie et al. Reply: ' Comparison of polarization observables in electron scattering from the proton and deuteron '

doi: 10.1103/PhysRevLett.81.2832
Citations: PlumX Metrics


1997MA68      Phys.Rev. C56, 3210 (1997)

R.Madey, B.S.Flanders, B.D.Anderson, A.R.Baldwin, W.Bertozzi, T.Chittrakarn, J.R.Comfort, J.M.Finn, C.C.Foster, C.Hyde-Wright, J.J.Kelly, C.Lebo, H.Orihara, W.Pairsuwan, J.W.Watson

0+ to 0- Transition in the 16O(p, n)16F Reaction at 79 MeV

NUCLEAR REACTIONS 16O(p, n), E=79 MeV; measured σ(θ, En), σ(θ). Comparison with DWIA calculations.

doi: 10.1103/PhysRevC.56.3210
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC0813.


1996AN16      Phys.Rev. C54, 1531 (1996)

B.D.Anderson, A.R.Baldwin, W.Bertozzi, T.N.Buti, A.Fazely, J.M.Finn, C.C.Foster, W.Glockle, J.Golak, M.A.Kovash, R.Kurmanov, R.Madey, B.Murdoch, P.C.Tandy, J.W.Watson, H.Witala

Cross-Section Measurements for the 2H(p, n)2p Reaction at 135 MeV

NUCLEAR REACTIONS 2H(p, nX), E=135 MeV; measured σ(E(x), θ). Compared with impulse approximation, 3-body Faddeev calculations.

doi: 10.1103/PhysRevC.54.1531
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC0442.


1996TR04      Phys.Rev.Lett. 76, 885 (1996)

C.Tripp, G.S.Adams, D.Beck, K.Dow, J.M.Finn, V.Frolov, O.Hansen, T.Kobayashi, J.McIntyre, R.Lourie, M.Nozar, S.Nagorny, J.Shaw, P.Stoler, T.Tamae, D.Tieger, W.Turchinetz, G.Warren, T.P.Welch, E.J.Winhold, M.Witkowski, B.Wojtsekhowski

Observation of Isovector-Isoscalar Two-Body Currents in Deuteron Knockout from 3He

NUCLEAR REACTIONS 3He(e, e'd), E=382.5, 265.3 MeV; measured σ(E(e), θ(e), θ(d)) vs recoil p(p); deduced longitudinal to transverse response function ratio.

doi: 10.1103/PhysRevLett.76.885
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1994ED01      Phys.Rev. C50, R1749 (1994)

T.Eden, R.Madey, W.-M.Zhang, B.D.Anderson, H.Arenhovel, A.R.Baldwin, D.Barkhuff, K.B.Beard, W.Bertozzi, J.M.Cameron, C.C.Chang, G.W.Dodson, K.Dow, M.Farkhondeh, J.M.Finn, B.S.Flanders, C.Hyde-Wright, W.-D.Jiang, D.Keane, J.J.Kelly, W.Korsch, S.Kowalski, R.Lourie, D.M.Manley, P.Markowitz, J.Mougey, B.Ni, T.Payerle, P.J.Pella, T.Reichelt, P.M.Rutt, M.Spraker, D.Tieger, W.Turchinetz, P.E.Ulmer, S.Van Verst, J.W.Watson, L.B.Weinstein, R.R.Whitney

Electric Form Factor of the Neutron from the 2H(e(pol), e'n(pol))1H Reaction at Q2 = 0.255 (GeV/c)2

NUCLEAR REACTIONS 2H(polarized e, e'n), E=868 MeV; measured neutron polarization. 1n deduced electric form factor.

doi: 10.1103/PhysRevC.50.R1749
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1994ED02      Nucl.Instrum.Methods Phys.Res. A338, 432 (1994)

T.Eden, R.Madey, W.-M.Zhang, B.D.Anderson, A.R.Baldwin, J.M.Cameron, J.M.Finn, C.C.Foster, J.J.Kelly, S.Kowalski, R.Lourie, P.Markowitz, B.Ni, P.J.Pella, J.Schambach, M.Spraker, E.Steinfelds, E.J.Stephenson, J.W.Watson

Performance of a Neutron Polarimeter to Measure the Electric Form Factor of the Neutron

NUCLEAR REACTIONS 14C(polarized p, n), E=138.4 MeV; measured neutron spectra, analyzing power; deduced method suitability for 1n electric form factor extriction studies.

doi: 10.1016/0168-9002(94)91327-7
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1993EP01      Phys.Rev.Lett. 70, 2868 (1993)

M.B.Epstein, K.A.Aniol, D.J.Margaziotis, B.Jiang, H.Baghaei, W.Bertozzi, W.Boeglin, L.Weinstein, S.Penn, J.Morrison, R.W.Lourie, J.M.Finn, C.F.Perdrisat, V.Punjabi, P.E.Ulmer, C.C.Chang, P.Boberg, J.Calarco, J.M.Laget

Measurement of the R(LT), R(L), and R(T) Response Functions for the 4He(e, e'p)3H Reaction at Large Missing Momentum

NUCLEAR REACTIONS 4He(e, e'p), E not given; measured σ(θ(e), θp, Ep); deduced longitudinal, transverse response functions. Model comparisons.

doi: 10.1103/PhysRevLett.70.2868
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1993MA21      Phys.Rev. C48, R5 (1993)

P.Markowitz, J.M.Finn, B.D.Anderson, H.Arenhovel, A.R.Baldwin, D.Barkhuff, K.B.Beard, W.Bertozzi, J.M.Cameron, C.C.Chang, G.W.Dodson, K.Dow, T.Eden, M.Farkhondeh, B.Flanders, C.Hyde-Wright, W.-D.Jiang, D.Keane, J.J.Kelly, W.Korsch, S.Kowalski, R.Lourie, R.Madey, D.M.Manley, J.Mougey, B.Ni, T.Payerle, P.Pella, T.Reichelt, P.M.Rutt, M.Spraker, D.Tieger, W.Turchinetz, P.E.Ulmer, S.Van Verst, J.W.Watson, L.B.Weinstein, R.R.Whitney, W.M.Zhang

Measurement of the Magnetic Form Factor of the Neutron

NUCLEAR REACTIONS 2H(e, e'n), E not given; measured en-coin. 1n deduced magnetic form factor. Associated particle technique.

doi: 10.1103/PhysRevC.48.R5
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1993WE01      Phys.Rev. C47, 225 (1993)

L.B.Weinstein, J.Morrison, A.Perry, H.Baghaei, W.Bertozzi, W.U.Boeglin, J.M.Finn, J.Glickman, C.E.Hyde-Wright, N.Kalantar-Nayestanaki, R.W.Lourie, J.A.Nelson, S.Penn, W.W.Sapp, C.P.Sargent, P.E.Ulmer, B.H.Cottman, L.Ghedira, E.J.Winhold, J.R.Calarco, J.Wise, P.Boberg, C.C.Chang, N.S.Chant, P.G.Roos, D.Chang, K.Aniol, M.B.Epstein, D.J.Margaziotis, C.Perdrisat, V.Punjabi, R.Whitney

N(*) Electroproduction and Propagation in Nuclei

NUCLEAR REACTIONS 12C(γ, π-X), E=virtual bremsstrahlung; measured σ vs missing energy with p-emission; deduced N(*)-nucleus interaction features.

doi: 10.1103/PhysRevC.47.225
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1992LY01      Phys.Rev. C45, 308 (1992)

C.R.Lyndon, H.O.Funsten, C.F.Perdrisat, V.Punjabi, J.M.Finn, B.J.Lieb, C.E.Stronach, N.L.Fuqua, H.S.Plendl, J.R.Mackenzie, R.Nair, J.R.Comfort, R.A.Giannelli, J.J.Reidy, L.Redmond, P.E.Koehler, S.A.Wender

Coincidence Analyzing-Power Measurements of the Reaction 12C(p(pol), p'γ)12C(*) Through the 15.11-MeV State

NUCLEAR REACTIONS 12C(polarized p, p'γ), E=318 MeV; measured coincidence analyzing powers vs φp. Relativistic, non-relativistic DWBA.

doi: 10.1103/PhysRevC.45.308
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1991DI03      Phys.Rev. C43, 1758 (1991)

S.Dixit, W.Bertozzi, T.N.Buti, J.M.Finn, F.W.Hersman, C.E.Hyde-Wright, M.V.Hynes, M.A.Kovash, B.E.Norum, J.J.Kelly, A.D.Bacher, G.T.Emery, C.C.Foster, W.P.Jones, D.W.Miller, B.L.Berman, D.J.Millener

Structure of 9Be from Proton Scattering at 180 MeV

NUCLEAR REACTIONS 9Be(polarized p, p')E=180 MeV; measured proton spectra, σ(θ), analyzing power vs θ. 9Be deduced levels, possible J, π. Other data input. Shell model.

doi: 10.1103/PhysRevC.43.1758
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1991FL01      Phys.Rev. C43, 2103 (1991)

B.S.Flanders, J.J.Kelly, H.Seifert, D.Lopiano, B.Aas, A.Azizi, G.Igo, G.Weston, C.Whitten, A.Wong, M.V.Hynes, J.McClelland, W.Bertozzi, J.M.Finn, C.E.Hyde-Wright, R.W.Lourie, B.E.Norum, P.Ulmer, B.L.Berman

Empirical Density-Dependent Effective Interaction for Nucleon-Nucleus Scattering at 500 MeV

NUCLEAR REACTIONS 16O(polarized p, p), E=498 MeV; measured σ(θ) analyzing power, spin rotation function, depolarization parameters. 40Ca(polarized p, p'), (polarized p, p), E=500 MeV; analyzed data; deduced density dependent empiricial effective interaction. Compared with nonrelativistic effective interactions, relativistic optical potentials.

doi: 10.1103/PhysRevC.43.2103
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1991KE02      Phys.Rev. C43, 1272 (1991)

J.J.Kelly, A.E.Feldman, B.S.Flanders, H.Seifert, D.Lopiano, B.Aas, A.Azizi, G.Igo, G.Weston, C.Whitten, A.Wong, M.V.Hynes, J.McClelland, W.Bertozzi, J.M.Finn, C.E.Hyde-Wright, R.W.Lourie, P.E.Ulmer, B.E.Norum, B.L.Berman

Effective Interaction for 16O(p, p') at E(p) = 318 MeV

NUCLEAR REACTIONS 16O(polarized p, p'), (polarized p, p), E=318 MeV; measured σ(θ), analyzing power vs θ; deduced empirical effective interaction. Folding model analysis, density dependence.

doi: 10.1103/PhysRevC.43.1272
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1991MA14      Phys.Rev. C43, 2147 (1991)

D.M.Manley, B.L.Berman, W.Bertozzi, T.N.Buti, J.M.Finn, F.W.Hersman, C.E.Hyde-Wright, M.V.Hynes, J.J.Kelly, M.A.Kovash, S.Kowalski, R.W.Lourie, B.Murdock, B.E.Norum, B.Pugh, C.Sargent, D.J.Millener

Electroexcitation of Negative-Parity States in 18O

NUCLEAR REACTIONS 18O(e, e'), E=119.4, 268.8 MeV; measured spectra, form factors. 18O levels deduced transition charge densities, reduced transition probabilities. Shell model calculations.

doi: 10.1103/PhysRevC.43.2147
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1991WE10      Nucl.Phys. A527, 348c (1991)

L.B.Weinstein, H.Baghaei, W.Bertozzi, J.M.Finn, J.Glickman, C.E.Hyde-Wright, N.Kalantar-Nayestanaki, R.W.Lourie, J.A.Nelson, W.W.Sapp, C.P.Sargent, P.E.Ulmer, B.H.Cottman, L.Ghedira, E.J.Winhold, J.R.Calarco, J.Wise, P.Boberg, C.C.Chang, D.Zhang, D.Zhang, K.Aniol, M.B.Epstein, D.J.Margaziotis, C.Perdrisat, V.Punjabi

Non-Single-Particle Interactions at Quasi-Elastic Kinematics

NUCLEAR REACTIONS 12C(e, e'p), E=460 MeV; measured σ(θp, θ(e')) vs missing energy; deduced deeply bound deuteron knockout. Compiled, reviewed other data.

doi: 10.1016/0375-9474(91)90124-O
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1990KE03      Phys.Rev. C41, 2504 (1990)

J.J.Kelly, J.M.Finn, W.Bertozzi, T.N.Buti, F.W.Hersman, C.Hyde-Wright, M.V.Hynes, M.A.Kovash, B.Murdock, P.Ulmer, A.D.Bacher, G.T.Emery, C.C.Foster, W.P.Jones, D.W.Miller, B.L.Berman

Effective Interactions and Nuclear Structure Using 180 MeV Protons. I. 16O(p, p')

NUCLEAR REACTIONS 16O(polarized p, p), (polarized p, p'), E=180 MeV; measured σ(θ), analyzing power vs θ; deduced density dependence of effective interaction. 16O levels deduced spectroscopic amplitudes.

doi: 10.1103/PhysRevC.41.2504
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC0141.


1990MA06      Phys.Rev. C41, 448 (1990)

D.M.Manley, D.J.Millener, B.L.Berman, W.Bertozzi, T.N.Buti, J.M.Finn, F.W.Hersman, C.E.Hyde-Wright, M.V.Hynes, J.J.Kelly, M.A.Kovash, S.Kowalski, R.W.Lourie, B.Murdock, B.E.Norum, B.Pugh, C.P.Sargent

Electroexcitation of Rotational Bands in 18O

NUCLEAR REACTIONS 18O(e, e'), E=194.3 MeV; measured longitudinal, Coulomb form factors. 18O levels deduced transition matrix elements, configurations. Shell model.

doi: 10.1103/PhysRevC.41.448
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1990WE06      Phys.Rev.Lett. 64, 1646 (1990)

L.B.Weinstein, H.Baghaei, W.Bertozzi, J.M.Finn, J.Glickman, C.E.Hyde-Wright, N.Kalantar-Nayestanaki, R.W.Lourie, J.A.Nelson, W.W.Sapp, C.P.Sargent, P.E.Ulmer, B.H.Cottman, L.Ghedira, E.J.Winhold, J.R.Calarco, J.Wise, P.Boberg, C.C.Chang, D.Zhang, K.Aniol, M.B.Epstein, D.J.Margaziotis, C.Perdrisat, V.Punjabi

Quasielastic Reaction Mechanism Studied Using the Reaction 12C(e, e'p)

NUCLEAR REACTIONS 12C(e, e'p), E not given; measured missing energy spectra; deduced subshell spectroscopic factors.

doi: 10.1103/PhysRevLett.64.1646
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1989BA03      Phys.Rev. C39, 177 (1989)

H.Baghaei, W.Bertozzi, K.I.Blomqvist, J.M.Finn, J.Flanz, C.E.Hyde-Wright, N.Kalantar-Nayestanaki, R.W.Lourie, J.Nelson, W.W.Sapp, C.P.Sargent, P.Ulmer, L.Weinstein, B.H.Cottman, P.K.Teng, E.J.Winhold, M.Yamazaki, J.R.Calarco, F.W.Hersman, C.Perdrisat, V.Punjabi, M.Epstein, D.J.Margaziotis

Electroexcitation of the Δ Resonance in the (e, e'p) Reaction

NUCLEAR REACTIONS 12C(e, e'p), E=460, 647; measured σ(E(e'), θp, θ(e')) vs missing energy; deduced reaction mechanism.

doi: 10.1103/PhysRevC.39.177
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1989KE03      Phys.Rev. C39, 1222 (1989)

J.J.Kelly, W.Bertozzi, T.N.Buti, J.M.Finn, F.W.Hersman, C.Hyde-Wright, M.V.Hynes, M.A.Kovash, B.Murdock, B.E.Norum, B.Pugh, F.N.Rad, A.D.Bacher, G.T.Emery, C.C.Foster, W.P.Jones, D.W.Miller, B.L.Berman, W.G.Love, J.A.Carr, F.Petrovich

Density Dependence in the Two-Nucleon Effective Interaction at 135 MeV

NUCLEAR REACTIONS 16O, 9Be(polarized p, p'), (polarized p, p), E=135 MeV; measured σ(θ), analyzing power vs θ. Local density approximation.

doi: 10.1103/PhysRevC.39.1222
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1988CH49      Phys.Rev.Lett. 60, 2595 (1988)

R.E.Chrien, S.Bart, P.Pile, R.Sutter, N.Tsoupas, H.O.Funsten, J.M.Finn, C.Lyndon, V.Punjabi, C.F.Perdrisat, B.J.Lieb, T.Kishimoto, L.C.Liu, R.Estep, B.Dropesky, C.E.Stronach, R.L.Stearns

Search for Bound States in the η Meson in Light Nuclei

doi: 10.1103/PhysRevLett.60.2595
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1988KA08      Phys.Rev.Lett. 60, 1707 (1988)

N.Kalantar-Nayestanaki, H.Baghaei, W.Bertozzi, S.Dixit, J.M.Finn, C.E.Hyde-Wright, S.Kowalski, R.W.Lourie, C.P.Sargent, P.E.Ulmer, L.Weinstein, M.V.Hynes, B.L.Berman, J.J.Kelly

Magnetic Structure of 17O at High Momentum

NUCLEAR REACTIONS 17O(e, e), E not given; measured magnetic form factor.

doi: 10.1103/PhysRevLett.60.1707
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1988MA47      J.Phys.(London) G14, L217 (1988)

C.F.Maguire, J.H.Hamilton, R.Soundranayagam, R.B.Piercey, J.M.Finn, W.Bertozzi, H.Baghaei, C.Hyde-Wright, T.Buti

Inconsistency of Hexadecapole Matrix Elements for 180Hf as Extracted from Nuclear and Leptonic Scattering

NUCLEAR REACTIONS 180Hf(e, e), (e, e'), E=115-280 MeV; measured σ vs momentum transfer. 180Hf levels deduced transition matrix elements.

doi: 10.1088/0305-4616/14/10/003
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1987HY01      Phys.Rev. C35, 880 (1987)

C.E.Hyde-Wright, W.Bertozzi, T.N.Buti, J.M.Finn, F.W.Hersman, M.V.Hynes, M.A.Kovash, J.J.Kelly, S.Kowalski, J.Lichtenstadt, R.W.Lourie, B.E.Norum, B.Pugh, C.P.Sargent, B.L.Berman, F.Petrovich, J.A.Carr

Electroexcitation of 4- States in 16O

NUCLEAR REACTIONS 16O(e, e'), E=230 MeV; measured σ(E(e'), θ(e')), transverse form factors. 16O deduced levels, J, π, T, spectroscopic amplitudes.

doi: 10.1103/PhysRevC.35.880
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1987MA52      Phys.Rev. C36, 1700 (1987)

D.M.Manley, B.L.Berman, W.Bertozzi, T.N.Buti, J.M.Finn, F.W.Hersman, C.E.Hyde-Wright, M.V.Hynes, J.J.Kelly, M.A.Kovash, S.Kowalski, R.W.Lourie, B.Murdock, B.E.Norum, B.Pugh, C.P.Sargent

High-Resolution Inelastic Electron Scattering from 17O

NUCLEAR STRUCTURE 17O; calculated levels; deduced rotational band features. Weak-coupling model.

NUCLEAR REACTIONS 17O(e, e'), E not given; measured form factors. 17O deduced levels, J, π, B(λ). Weak-coupling model.

doi: 10.1103/PhysRevC.36.1700
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1987UL03      Phys.Rev.Lett. 59, 2259 (1987)

P.E.Ulmer, H.Baghaei, W.Bertozzi, K.I.Blomqvist, J.M.Finn, C.E.Hyde-Wright, N.Kalantar-Nayestanaki, S.Kowalski, R.W.Lourie, J.Nelson, W.W.Sapp, C.P.Sargent, L.Weinstein, B.H.Cottman, P.K.Teng, E.J.Winhold, M.Yamazaki, J.R.Calarco, F.W.Hersman, J.J.Kelly, M.E.Schulze, G.Audit

Missing-Energy Dependence of the Separated Response Functions for the Reaction 12C(e, e'p)

NUCLEAR REACTIONS 12C(e, e'p), E=288, 443 MeV; measured transverse, longitudinal response functions, spectral function difference vs missing energy; deduced reaction mechanism.

doi: 10.1103/PhysRevLett.59.2259
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1986BU02      Phys.Rev. C33, 755 (1986)

T.N.Buti, J.Kelly, W.Bertozzi, J.M.Finn, F.W.Hersman, C.Hyde-Wright, M.V.Hynes, M.A.Kovash, S.Kowalski, R.W.Lourie, B.Murdock, B.E.Norum, B.Pugh, C.P.Sargent, W.Turchinetz, B.L.Berman

Electroexcitation of Isoscalar States in 16O

NUCLEAR REACTIONS 16O(e, e'), E=90-375 MeV; measured form factors. 16O levels deduced transition charge densities. Shell, α-cluster models comparison.

doi: 10.1103/PhysRevC.33.755
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1986HE09      Phys.Rev. C33, 1905 (1986)

F.W.Hersman, W.Bertozzi, T.N.Buti, J.M.Finn, C.E.Hyde-Wright, M.V.Hynes, J.Kelly, M.A.Kovash, S.Kowalski, J.Lichtenstadt, R.Lourie, B.Murdock, B.Pugh, F.N.Rad, C.P.Sargent, J.B.Bellicard

Inelastic Electron Scattering from Collective Levels of 154Gd

NUCLEAR REACTIONS 154Gd(e, e), (e, e'), E=78-380 MeV; measured σ(E(e')), σ(θ). 154Gd levels deduced B(λ), transition charge density. Hartree-Fock wave functions, rotational, vibrational models.

doi: 10.1103/PhysRevC.33.1905
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1986KE05      Phys.Lett. 169B, 157 (1986)

J.Kelly, W.Bertozzi, T.N.Buti, J.M.Finn, F.W.Hersman, M.V.Hynes, C.Hyde-Wright, B.E.Norum, A.D.Bacher, G.T.Emery, C.C.Foster, W.P.Jones, D.W.Miller, B.L.Berman, J.A.Carr, F.Petrovich

Neutron Transition Density for the Lowest 2+ State of 18O

NUCLEAR REACTIONS 16,18O(p, p'), E=135 MeV; measured σ(θ). 18O level deduced neutron transition density.

doi: 10.1016/0370-2693(86)90641-6
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1986LO03      Phys.Rev.Lett. 56, 2364 (1986); Erratum Phys.Rev.Lett. 57, 653 (1986)

R.W.Lourie, H.Baghaei, W.Bertozzi, K.I.Blomqvist, J.M.Finn, C.E.Hyde-Wright, N.Kalantar-Nayestanaki, J.Nelson, S.Kowalski, C.P.Sargent, W.W.Sapp, P.Ulmer, J.Wiggins, B.H.Cottman, P.K.Teng, E.J.Winhold, M.Yamazaki, J.R.Calarco, F.W.Hersman, J.J.Kelly, M.E.Schulze

Reaction 12C(e, e'p) in the Dip Region

NUCLEAR REACTIONS 12C(e, e'p), E=459 MeV; measured missing energy spectra, e'p-coin; deduced reaction mechanism.

doi: 10.1103/PhysRevLett.56.2364
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1986MA48      Phys.Rev. C34, 1214 (1986)

D.M.Manley, B.L.Berman, W.Bertozzi, J.M.Finn, F.W.Hersman, C.E.Hyde-Wright, M.V.Hynes, J.J.Kelly, M.A.Kovash, S.Kowalski, R.W.Lourie, B.Murdock, B.E.Norum, B.Pugh, C.P.Sargent

Electroexcitation of M4 Transitions in 17O and 18O

NUCLEAR REACTIONS 17,18O(e, e'), E=179.5, 194.3, 209.2, 248.4, 268.8 MeV; measured σ(E(e')). 17,18O deduced levels, form factors, B(λ), J, π, T. High resolution spectrometer, enriched targets.

doi: 10.1103/PhysRevC.34.1214
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1984FI06      Phys.Rev. C29, 2230 (1984)

J.M.Finn, R.W.Lourie, B.H.Cottman

Scaling Violation in the Separated Response Functions of 12C

NUCLEAR REACTIONS 12C(e, e'), E not given; analyzed deep inelastic data; deduced transverse response function enhancement relative to longitudinal, relativistic effective mass role in nucleon current operator, longitudinal scaling function first, second moments. Relativistic y scaling procedure.

doi: 10.1103/PhysRevC.29.2230
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1984RE02      Phys.Lett. 137B, 32 (1984)

W.Reuter, E.B.Shera, M.V.Hoehn, F.W.Hersman, T.Milliman, J.M.Finn, C.Hyde-Wright, R.Lourie, B.Pugh, W.Bertozzi

Nuclear Charge Densities in the Transition Region: 192Os

NUCLEAR REACTIONS 192Os(e, e), (e, e'), E=150, 250, 360 MeV; measured σ(E(e)). 192Os levels deduced transition densities, B(E2), rms radii, quadrupole moment. Muonic atom data input.

doi: 10.1016/0370-2693(84)91100-6
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1984RE10      Phys.Rev. C30, 1465 (1984)

W.Reuter, E.B.Shera, M.V.Hoehn, F.W.Hersman, T.Milliman, J.M.Finn, C.Hyde-Wright, R.Lourie, B.Pugh, W.Bertozzi

Ground-State and Transition Charge Densities in 192Os

NUCLEAR STRUCTURE 192Os, 194Pt; calculated proton densities, rms radius, quadrupole moment. 186Os; calculated rms radius, quadrupole moment. Hartree-Fock theory, other model comparisons.

NUCLEAR REACTIONS 192Os(e, e), (e, e'), E=150, 250, 355, 364 MeV; measured σ(θ), σ(E(e)). 192Os levels deduced B(λ), transition radii, charge density. Hartree-Fock calculations.

doi: 10.1103/PhysRevC.30.1465
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1983AN05      Phys.Rev. C27, 1387 (1983)

B.D.Anderson, A.Fazely, R.J.McCarthy, P.C.Tandy, J.W.Watson, R.Madey, W.Bertozzi, T.N.Buti, J.M.Finn, J.Kelly, M.A.Kovash, B.Pugh, B.H.Wildenthal, C.C.Foster

Gamow-Teller Strength in the 18O(p, n)18F Reaction at 135 MeV

NUCLEAR REACTIONS 18O(p, n), E=135.2 MeV; measured σ(En), σ(θ). 18F deduced levels, J, π, T, Gamow-Teller transition strength. DWIA analysis.

doi: 10.1103/PhysRevC.27.1387
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1983BA28      Nucl.Phys. A402, 515 (1983)

P.Barreau, M.Bernheim, J.Duclos, J.M.Finn, Z.Meziani, J.Morgenstern, J.Mougey, D.Royer, B.Saghai, D.Tarnowski, S.Turck-Chieze, M.Brussel, G.P.Capitani, E.De Sanctis, S.Frullani, F.Garibaldi, D.B.Isabelle, E.Jans, I.Sick, P.D.Zimmerman

Deep-Inelastic Electron Scattering from Carbon

NUCLEAR REACTIONS C(e, e'), E=120-680 MeV; measured σ(θ, E, E(e')); deduced sum rule. Response functions decompositions.

doi: 10.1016/0375-9474(83)90217-8
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1983BA54      Nuovo Cim. 76A, 361 (1983)

P.Barreau, M.Bernheim, M.K.Brussel, G.P.Capitani, E.De Sanctis, J.Duclos, J.M.Finn, S.Frullani, F.Garibaldi, D.B.Isabelle, E.Jans, Z.Meziani, J.Morgenstern, J.Mougey, B.Saghai, I.Sick, D.Tarnowski, S.Turck-Chieze, P.D.Zimmerman

Coulomb Sum Rule on 12C

NUCLEAR REACTIONS 12C(e, e'), E=120-680 MeV; measured σ(θ, E(e')), transverse, longitudinal response functions; deduced Coulomb sum rule. Shell model, resonant, nonresonant meson production, exchange currents.

doi: 10.1007/BF02833732
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1983DE25      Phys.Rev. C28, 631 (1983)

M.Deady, C.F.Williamson, J.Wong, P.D.Zimmerman, C.Blatchley, J.M.Finn, J.LeRose, P.Sioshansi, R.Altemus, J.S.McCarthy, R.R.Whitney

Response Functions for Deep Inelastic Scattering from 40Ca

NUCLEAR REACTIONS 40Ca(e, e'), E=100-375 MeV; measured σ(θ); deduced longitudinal, transverse response functions.

doi: 10.1103/PhysRevC.28.631
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1983HE21      Phys.Lett. 132B, 47 (1983)

F.W.Hersman, W.Bertozzi, T.N.Buti, J.M.Finn, C.Hyde-Wright, M.V.Hynes, J.Kelly, M.A.Kovash, S.Kowalski, J.Lichtenstadt, R.Lourie, B.Murdock, B.Pugh, F.N.Rad, C.P.Sargent, J.B.Bellicard

A Test of the Interacting Boson Approximation using Electron Scattering

NUCLEAR REACTIONS 154Gd(e, e'), E not given; measured σ(θ). 154Gd levels deduced electric quadrupole transition charge density linear dependence. Interacting boson approximation.

doi: 10.1016/0370-2693(83)90219-8
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1983LO11      Phys.Rev. C28, 489 (1983)

R.W.Lourie, W.Bertozzi, T.N.Buti, J.M.Finn, F.W.Hersman, C.Hyde, J.Kelly, M.A.Kovash, S.Kowalski, M.V.Hynes, B.E.Norum, B.L.Berman

Inelastic Electron Scattering from 9Be

NUCLEAR REACTIONS 9Be(e, e'), E=100-285 MeV; measured form factors. 9Be level deduced possible parity assignment. Shell, Nilsson model comparisons.

doi: 10.1103/PhysRevC.28.489
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1982FA06      Phys.Rev. C25, 1760 (1982); Erratum Phys.Rev. C26, 746 (1982)

A.Fazely, B.D.Anderson, M.Ahmad, A.R.Baldwin, A.M.Kalenda, R.J.McCarthy, J.W.Watson, R.Madey, W.Bertozzi, T.N.Buti, J.M.Finn, M.A.Kovash, B.Pugh, C.C.Foster

Spectroscopy of 16F from the 16O(p, n)16F Reaction at 99 and 135 MeV

NUCLEAR REACTIONS 16O(p, n), E=99.1, 135.2 MeV; measured σ(En) vs θ; deduced σ(θ). 16F levels deduced J, π, analog character. Tof. Shell model.

doi: 10.1103/PhysRevC.25.1760
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO0028.


1982JA06      Phys.Rev.Lett. 49, 974 (1982)

E.Jans, P.Barreau, M.Bernheim, J.M.Finn, J.Morgenstern, J.Mougey, D.Tarnowski, S.Turck-Chieze, S.Frullani, F.Garibaldi, G.P.Capitani, E.de Sanctis, M.K.Brussel, I.Sick

Quasifree (e, e'p) Reaction on 3He

NUCLEAR REACTIONS 3He(e, e'p), E at 310 MeV/c; measured σ(E(e'), θ(e'), θp). 3He deduced proton momentum distribution. Two-, three-body disintegration, coplanar geometry, different kinematic conditions. Faddeev, variational calculations.

doi: 10.1103/PhysRevLett.49.974
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1978MO19      Phys.Rev.Lett. 41, 1645 (1978)

J.Mougey, M.Bernheim, D.Royer, D.Tarnowski, S.Turck, P.D.Zimmerman, J.M.Finn, S.Frullani, D.B.Isabelle, G.P.Capitani, E.De Sanctis, I.Sick

Deep-Inelastic Electron Scattering from 12C

NUCLEAR REACTIONS 12C(e, e'p), E=160, 520 MeV; measured response function at 60°, 130°. Compared with one-nucleon knockout, coherent pion production, Δ-excitation, meson-exchange-current contribution.

doi: 10.1103/PhysRevLett.41.1645
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1978ZI04      Phys.Lett. 80B, 45 (1978)

P.D.Zimmerman, J.M.Finn, C.F.Williamson, T.de Forest, Jr., W.C.Hermans

Deep-Inelastic Electron Scattering from 40Ca in the Transverse Region

NUCLEAR REACTIONS 40Ca(e, e'), E=150, 200, 250 MeV; measured response function. Comparison with harmonic oscillator shell model, meson exchange current calculations.

doi: 10.1016/0370-2693(78)90302-7
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1977CR02      Nucl.Phys. A278, 253 (1977)

H.Crannell, J.M.Finn, P.Hallowell, J.T.O'Brien, N.Ensslin, L.W.Fagg, E.C.Jones, Jr., W.L.Bendel

Inelastic Electron Scattering at 180° from 14C

NUCLEAR REACTIONS 14C(e, e'), E=37, 50.5, 60.5 MeV; measured σ(Eγ, 180°). 14C deduced levels J, π, Γ, B(λ). Enriched target.

doi: 10.1016/0375-9474(77)90238-X
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1977FI09      Nucl.Phys. A290, 99 (1977)

J.M.Finn, H.Crannell, P.L.Hallowell, J.T.O'Brien, S.Penner

Inelastic Electron Scattering from Low-Lying States in the Nuclei 36Ar And 40Ar

NUCLEAR REACTIONS 36,40Ar(e, e'), E=65-115 MeV; measured σ(E, θ). 36,40Ar deduced levels, J, π, Γ. Enriched 36Ar target.

doi: 10.1016/0375-9474(77)90668-6
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1977SZ02      Phys.Rev. C15, 1200 (1977)

Z.M.Szalata, J.M.Finn, J.Flanz, F.J.Kline, G.A.Peterson, J.W.Lightbody, Jr., X.K.Maruyama, S.Penner

Low-Momentum-Transfer Elastic Electron Scattering from 3He

NUCLEAR REACTIONS 3He(e, e), E=28.8-95.0 MeV; measured σ(E) at 75°. 3He deduced rms charge radius.

doi: 10.1103/PhysRevC.15.1200
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1976FI12      Nucl.Phys. A274, 28 (1976)

J.M.Finn, H.Crannell, P.L.Hallowell, J.T.O'Brien, S.Penner

Elastic Electron Scattering from the Isotopes 36Ar and 40Ar

NUCLEAR REACTIONS 36,40Ar(e, e'), E=65-115 MeV; measured σ(E, θ). 36,40Ar deduced nuclear charge distributions. Enriched targets.

doi: 10.1016/0375-9474(76)90224-4
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1974KL12      Nuovo Cim. 23A, 137 (1974)

F.J.Kline, H.Crannell, J.M.Finn, P.L.Hallowell, J.T.O'Brien, C.W.Werntz, S.P.Fivozinsky, J.W.Lightbody, Jr., S.Penner

Search for the Lowest T = 2 State in 14C by Inelastic Electron Scattering

NUCLEAR REACTIONS 14C(e, e'), E=61, 81 MeV; measured σ(Ee'). 14C deduced upper limit for T=2 level.

doi: 10.1007/BF02748297
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