Tsushima, K.Saito, K.Steffens, F. M.2014-05-202014-05-202005-04-14Physics Letters B. Amsterdam: Elsevier B.V., v. 612, n. 1-2, p. 5-12, 2005.0370-2693http://hdl.handle.net/11449/23426Effect of bound nucleon internal structure change on nuclear structure functions is investigated based on local quark-hadron duality. The bound nucleon structure functions calculated for charged-lepton and (anti)neutrino scattering are all enhanced in symmetric nuclear matter at large Bjorken-x (x greater than or similar to 0.85) relative to those in a free nucleon. This implies that a part of the enhancement observed in the nuclear structure function F-2 (in the resonance region) at large Bjorken-x (the EMC effect) is due to the effect of the bound nucleon internal structure change. However, the x dependence for the charged-lepton and (anti)neutrino scattering is different. The former (latter) is enhanced (quenched) in the region 0.8 less than or similar to x less than or similar to 0.9 (0.7 less than or similar to x less than or similar to 0.85) due to the difference of the contribution from axial vector forrn factor. Because of these differences charge symmetry breaking in parton distributions will be enhanced in nuclei. (c) 2005 Elsevier B.V. All rights reserved.5-12englocal quark-hadron dualitynuclear structure functionsbound nucleon internal structure changeEffect of bound nucleon internal structure change on nuclear structure functionsArtigo10.1016/j.physletb.2005.02.056WOS:000228402000002Acesso restrito