determination and theoretical analysis of the differential cross sections of the 2h(d,p) reaction at energies and detection angles suitable for nra (nuclear reaction analysis)

determination and theoretical analysis of the differential cross sections of the 2h(d,p) reaction at energies and detection angles suitable for nra (nuclear reaction analysis)

;Paneta V.;Axiotis M.;Gastis P.;Kokkoris M.;Kontos A.;Lagoyannis A.;Mayer M.;Misaelides P.;Perdikakis G.;Vlastou R.
utilitas mathematica 2014 Vol. 66 pp. 10009-
166
v.2014epjdetermination

Abstract

The accurate determination of deuteron depth profile presents a strong analytical challenge for all the principal IBA (Ion Beam Analysis) techniques. As far as NRA (Nuclear Reaction Analysis) is concerned, the 2H(d,p) reaction, seems to be a promising candidate, especially in the case of complex matrices, or for the study of deep-implanted deuteron layers. In the present work differential cross-section values for the 2H(d,p) reaction have been determined at 140°, 160° and 170°, for Ed,lab=900-1600 keV, with an energy step of 50 keV, using a well-characterized, thin C:D target deposited on a polished Si wafer. The experimental results were analyzed using the R-matrix calculations code AZURE.

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