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GiBUU

Changes between Version 21 and Version 22 of GiBUU_Code_history


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Timestamp:
Jul 30, 2012, 9:48:28 PM (12 years ago)
Author:
mosel
Comment:

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  • GiBUU_Code_history

    v21 v22  
    1919published by '''Pascal Mühlich''' in the year 2007. He worked on pion- and photon-induced
    2020processes both in the resonance and high energy region, thereby focusing on possible signals for
    21 changes of meson properties within the medium.
     21changes of meson properties within the medium. During all of this time '''Stefan Leupold''' (then a postdoc and later Assistant Professor at Giessen, now at Uppsala) provided essential theoretical input both to our implementation of transport theory in GiBUU and to the study of in-medium properties of hadrons.
    2222
    2323The courageous PhD student '''Oliver Buss'''[wiki:oliver ***] during [http://www.uni-giessen.de/cms/fbz/fb07/fachgebiete/physik/einrichtungen/theorie/theorie1/publications/dissertation/buss_diss his PhD] (2004-08) did a complete rewrite of the code and transformed it to a modular, modern FORTRAN version. Since this point we label the code by '''"GiBUU"'''.
     
    3333the new code. Gaitanos and Larionov implemented another, relativistic version of the mean field and joined the code with a statistical method to describe fragment formation and decay.
    3434
    35 On the physics side O. Buss showed that the observed in-medium changes of the 2 pi strength could be well explained by a state-of-the-art treatment of final state interactions as they were possible now with the GiBUU code. He also published very detailed results on pion-nucleus interactions. Kai Gallmeister, on the high-energy side, went on to extract prehadronic interactions from a detailed comparison with the EMC and HERMES experiments and Tina Leitner obtained the first reliable results on neutrino-nucleus reactions, both for inclusive and exclusive reactions. Recently, '''Olga Lalakulich''' (Russia) joined this neutrino activity, concentrating on a good treatment of background terms in the pion-production channel. At the same time, '''Murat Kaskulov''' (Russia) worked with the code on an analysis of nuclear transparency measured at JLAB, with an eye on color transparency. Most recently, '''Ivan Lappo-Danilevsky''' used GiBUU to investigate scaling in the total cross sections for interactions of leptons with nuclei.
     35On the physics side O. Buss showed that the observed in-medium changes of the 2 pi strength could be well explained by a state-of-the-art treatment of final state interactions as they were possible now with the GiBUU code. He also published very detailed results on pion-nucleus interactions and Tina Leitner obtained the first reliable results on neutrino-nucleus reactions, both for inclusive and exclusive reactions. For both of these topics the theoretical input by '''Luis Alvarez-Ruso''' (then a postdoc at Giessen, now at Valencia) was absolutely essential. Kai Gallmeister, on the high-energy side, went on to extract prehadronic interactions from a detailed comparison with the EMC and HERMES experiments. Later, '''Olga Lalakulich''' (Russia) joined this neutrino activity, concentrating on a good treatment of background terms in the pion-production channel. At the same time, '''Murat Kaskulov''' (Russia) worked with the code on an analysis of nuclear transparency measured at JLAB, with an eye on color transparency. Most recently, '''Ivan Lappo-Danilevsky''' used GiBUU to investigate scaling in the total cross sections for interactions of leptons with nuclei.
     36More recently (summer of 2012) Kai Gallmeister has implemented a better description of QE scattering of leptons into GiBUU as well as the initial 2p-2h excitations. Alexei Larionov is doing essential work with antiproton-induced reactions on nuclei and Theo Gaitanos has implemented the fragment-formation routines from a statistical model into GiBUU; he is also performing (together with A.L.) work on the double-step reaction to produce double hypernuclei with antiproton beams at the experiment PANDA at FAIR.
    3637
    3738