Journalartikel

Probing hadronic formation times with antiprotons in p+A reactions at AGS energies


AutorenlisteCassing, W; Bratkovskaya, EL; Hansen, O

Jahr der Veröffentlichung2002

Seiten224-238

ZeitschriftNuclear Physics A: Nuclear and Hadronic Physics

Bandnummer707

Heftnummer1-2

ISSN0375-9474

eISSN1873-1554

DOI Linkhttps://doi.org/10.1016/S0375-9474(02)00919-3

VerlagElsevier


Abstract
The production of antiprotons in p + A reactions is calculated in a microscopic transport approach employing hadronic and string degrees of freedom (HSD). It is found that the abundancies of antiprotons as observed by the E910 Collaboration in p + A reactions at 12.3 GeV/c as well as 17.5 GeV/c can approximately be described on the basis of primary proton-nucleon and secondary meson-baryon production channels for all targets. The transport calculations demonstrate that the antiproton rapidity distributions for heavy targets are sensitive to the (p) over bar (or hadron) formatrion time in the nuclear medium. Within our analysis the data from the E910 Collaboration are reasonably described with a formation time of 0.4-0.8 fm/c in the hadron rest frame. (C) 2002 Elsevier Science B.V. All rights reserved.



Zitierstile

Harvard-ZitierstilCassing, W., Bratkovskaya, E. and Hansen, O. (2002) Probing hadronic formation times with antiprotons in p+A reactions at AGS energies, Nuclear Physics A: Nuclear and Hadronic Physics, 707(1-2), Article PII S0375-9474(02)00919-3. pp. 224-238. https://doi.org/10.1016/S0375-9474(02)00919-3

APA-ZitierstilCassing, W., Bratkovskaya, E., & Hansen, O. (2002). Probing hadronic formation times with antiprotons in p+A reactions at AGS energies. Nuclear Physics A: Nuclear and Hadronic Physics. 707(1-2), Article PII S0375-9474(02)00919-3, 224-238. https://doi.org/10.1016/S0375-9474(02)00919-3



Schlagwörter


ANNIHILATIONGEV/CHEAVY-ION COLLISIONSmany-body theorynuclear reaction models and methodsNUCLEUS-NUCLEUS COLLISIONSPB-PB COLLISIONSPROTON-NUCLEUSrelativistic modelsSPS ENERGIESSTRANGENESS ENHANCEMENTSUBTHRESHOLD ANTIPROTONTRANSPORT APPROACH


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