Inclusive Proton Energy Spectra of the Deuteron Induced Reaction

The continuum-discritized coupled channel method and the glauber model are applied for the description of deuteron elastic breakup and the stripping processes, respectively. Combined with the conventional two-component exciton model for pre-equilibrium processes and the Hauser-Feshbach theory for co...

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Veröffentlicht in:Chinese physics letters 2011-11, Vol.28 (11), p.112401-1-112401-4
Hauptverfasser: Wang, Jia (佳王), Ye, Tao (涛叶), Sun, Wei-Li (伟力 孙), Watanabe, Yukinobu, Ogata, Kazuyuki
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container_issue 11
container_start_page 112401
container_title Chinese physics letters
container_volume 28
creator Wang, Jia (佳王)
Ye, Tao (涛叶)
Sun, Wei-Li (伟力 孙)
Watanabe, Yukinobu
Ogata, Kazuyuki
description The continuum-discritized coupled channel method and the glauber model are applied for the description of deuteron elastic breakup and the stripping processes, respectively. Combined with the conventional two-component exciton model for pre-equilibrium processes and the Hauser-Feshbach theory for compound process, an approach based on models is proposed to analyze the inclusive proton energy spectra of a deuteron-induced reaction. The contributions from each process to the energy spectra of the super(5)8i(d,xp) reaction are quantitatively given. The results show that this approach is able to reasonably reproduce the experimental data of the double differential cross sections, energy spectra and cross sections, although further improvements are needed
doi_str_mv 10.1088/0256-307X/28/11/112401
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Combined with the conventional two-component exciton model for pre-equilibrium processes and the Hauser-Feshbach theory for compound process, an approach based on models is proposed to analyze the inclusive proton energy spectra of a deuteron-induced reaction. The contributions from each process to the energy spectra of the super(5)8i(d,xp) reaction are quantitatively given. The results show that this approach is able to reasonably reproduce the experimental data of the double differential cross sections, energy spectra and cross sections, although further improvements are needed</abstract><pub>IOP Publishing</pub><doi>10.1088/0256-307X/28/11/112401</doi></addata></record>
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subjects Cross sections
Deuterons
Energy spectra
Excitation spectra
Mathematical models
Proton energy
Spectra
Stripping
title Inclusive Proton Energy Spectra of the Deuteron Induced Reaction
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