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Photon-induced proton knockout from 208Pb and 12C

✍ Scribed by E.C. Aschenauer; C. Van den Abeele; J.-O. Adler; B.-E. Andersson; L.J. de Bever; I. Bobeldijk; D. Branford; S.A. Bulychjov; T. Davinson; K. Hansen; D.G. Ireland; L. Isaksson; D. Ivanov; D.G. Johnstone; A. Khanov; L. Lapikás; L.J. Lindgren; G. de Meyer; D. Van Neck; B. Nilsson; H. Ruijter; D. Ryckbosch; A. Sandell; A.C. Shotter; B. Schröder; V. Van der Sluys; G. van der Steenhoven; P. Svensson; M.A. van Uden; R.E. Van de Vyver


Book ID
104336223
Publisher
Elsevier Science
Year
1997
Tongue
English
Weight
975 KB
Volume
615
Category
Article
ISSN
0375-9474

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✦ Synopsis


Cross sections have been measured for the reactions 2°sPb(y,p) and 12C(y,p) leading to the low-lying and continuum states in 2°7T1 and 11B using a high energy-resolution tagged photon beam of 41 to 57 MeV. The data are compared with results obtained with the (e,e'p) reaction in the same recoil-momentum range and with various theoretical calculations. A comparison of the (e,e'p) and (y,p) data in terms of a reduced cross section versus momentum does not show a systematic overlap of the (e,e'p) and (y,p) results, i.e. no scaling is observed. Distortedwave impulse-approximation (DWIA) calculations, of which the input is constrained by the (e,e'p) data, and random-phase approximation calculations (RPA) underestimate the 12C(y,p) data by typically a factor five depending on angle and missing energy. For 2°spb the difference between the calculations and the data for the low-lying states is much less, but an increasing discrepancy between the data and the calculations is found in the continuum. The inclusion of meson-exchange currents (MEC) brings the calculations for both nuclei on average closer to the data, but MEC effects are considerably less important for 2~Pb as compared to ~2C. Finally, a remarkable similarity is observed between the continuum response of the (y,p) and (e,e'p) reactions on 2°sPb despite the difference in the electromagnetic couplings involved. (~) 1997


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