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Binding Energy of He-7(Lambda) and Test of Charge Symmetry Breaking in the Lambda N Interaction Potential'

Author:
Hashimoto, O.  Fujii, Y.  Honda, D.  Kaneta, M.  Kato, F.  Kawama, D.  Maruyama, N.  Matsumura, A.  Nakamura, S. N.  Nomura, H.  Nonaka, K.  Ohtani, A.  Okayasu, Y.  Osaka, M.  Oyamada, M.  Sumihama, M.  Tamura, H.  Baker, O. K.  Cole, L.  Christy, M.  Gueye, P.  Keppel, C.  Tang, L.  Yuan, L.  Acha, A.  Baturin, P.  Boeglin, W.  Kramer, L.  Markowitz, P.  Pamela, P.  Perez, N.  Raue, B.  Reinhold, J.  Rivera, R.  Kato, S.  Sato, Y.  Takahashi, T.  Daniel, A.  Hungerford, Ed V.  Ispiryan, M.  Kalantarians, N.  Lan, K. J.  Li, Y.  Miyoshi, T.  Randeniya, S.  Rodriguez, V. M.  Bosted, P.  Carlini, R.  Ent, R.  Fenker, H.  Gaskell, D.  Jones, M.  Mack, D.  Roche, J.  Smith, G.  Tvaskis, V.  Vulcan, W.  Wood, S.  Yan, C.  Asaturyan, A.  Asaturyan, R.  Egiyan, K.  Mkrtchyan, A.  Mkrtchyan, H.  Margaryan, A.  Marikyan, G.  Navasardyan, T.  Tadevosyan, V.  Zamkochian, S.  Hu, B.  Song, Y.  Luo, W.  Androic, D.  Furic, M.  Petkovic, T.  Seva, T.  Ahmidouch, A.  Danagoulian, S.  Gasparian, A.  Halkyard, R.  Johnston, K.  Simicevic, N.  Wells, S.  Niculescu, G.  Niculescu, M-I  Gan, L.  Benmokhtar, F.  Horn, T.  Elaasar, M.  Gibson, E. F.  


Journal:
INTERNATIONAL NUCLEAR PHYSICS CONFERENCE 2010 (INPC2010): HADRONS IN NUCLEI


Issue Date:
2011


Abstract(summary):

The binding energy of He-7(Lambda) has been obtained for the first time with reaction spectroscopy using the (e, e'K+) reaction at Jefferson Lab's Hall C. A comparison among the binding energies of the A=7 T=1 iso-triplet hypernuclei, He-7(Lambda), Li-7(Lambda)* and Be-7(Lambda), is made and possible charge symmetry breaking (CSB) in the AN potential is discussed. For He-7(Lambda) and Be-7(Lambda), the shifts in binding energies are opposite to those predicted by a recent cluster model calculation, which assumes that the unexplained part of the binding energy difference between H-4(Lambda) and He-4(Lambda), is due to the CSB of the AN potential. Further examination of CSB in light hypernuclear systems is required both experimentally and theoretically.


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