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This title appears in the Scientific Report : 2013 

The pp → nK+Σ+ reaction at 2.95 GeV/c

The pp → nK+Σ+ reaction at 2.95 GeV/c

The total cross-section of the pp -> nK(+) L(+) reaction was measured at COSY using a proton beam with a momentum of p (beam) = 2.95 GeV/c, corresponding to an excess energy of = 129 MeV. The neutron detector COSYnus was added to the time-of-flight spectrometer COSY-TOF which tracks charged prima...

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Personal Name(s): Abdel-Bary, M. (Corresponding author)
Abdel-Samad, S. / Bilger, R. / Brinkmann, K-Th. / Clement, H. / Doroshkevich, E. / Dshemuchadse, S. / Erhardt, A. / Eyrich, W. / Filges, D. / Filippi, A. / Freiesleben, H. / Fritsch, M. / Georgi, J. / Gillitzer, A. / Hesselbarth, D. / Jakob, B. / Karsch, L. / Kilian, K. / Koch, H. / Kreß, J. / Kuhlmann, E. / Marcello, S. / Marwinski, S. / Mauro, S. / Michel, P. / Möller, K. / Morsch, H. P. / Naumann, L. / Paul, N. / Plettner, Ch. / Richter, M. / Ritman, J. / Roderburg, E. / Schamlott, A. / Schönmeier, P. / Schroeder, W. / Schulte-Wissermann, M. / Sefzick, T. / Stinzig, F. / Steinke, M. / Sun, G. Y. / Teufel, A. / Wagner, G. J. / Wagner, M. / Wilms, A. / Wintz, P. / Wirth, S.
Contributing Institute: Experimentelle Hadronstruktur; IKP-1
Published in: The @European physical journal / A, 48 (2012) 3, S. 37
Imprint: Berlin Springer 2012
DOI: 10.1140/epja/i2012-12037-2
Document Type: Journal Article
Research Program: Hadron Structure and Dynamics (HSD)
Subject (ZB):
Sigma: decay
p: beam
spectrometer: time-of-flight
n: detector
p: momentum
total cross section
charged particle
Juelich COSY PS
COSY-TOF
tracks
p p > > n K+ Sigma+
Publikationsportal JuSER
Please use the identifier: http://dx.doi.org/10.1140/epja/i2012-12037-2 in citations.

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The total cross-section of the pp -> nK(+) L(+) reaction was measured at COSY using a proton beam with a momentum of p (beam) = 2.95 GeV/c, corresponding to an excess energy of = 129 MeV. The neutron detector COSYnus was added to the time-of-flight spectrometer COSY-TOF which tracks charged primary and secondary particles. Thus a complete reconstruction of the exit channel was feasible by exploiting for both neutron and kaon their time and direction of flight as well as the decay of the L(+)-hyperon into a neutral and a charged particle. The cross-section was determined to be between I = 2.0 and 5.9 mub with 68% confidence. The experimental data published so far by various groups for this reaction are assessed as a whole. We conclude that either the theoretical models lack some important aspect of the reaction mechanism if one takes the experimental data at face value, or the experimental data are inconsistent and therefore theoretical descriptions must fail.

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