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Title: Global analysis of charge exchange meson production at high energies

Abstract

Many experiments that are conducted to study the hadron spectrum rely on peripheral resonance production. Hereby, the rapidity gap allows the process to be viewed as an independent fragmentation of the beam and the target, with the beam fragmentation dominated by production and decays of meson resonances. We test this separation by determining the kinematic regimes that are dominated by factorizable contributions, indicating the most favorable regions to perform this kind of experiments. In doing so, we use a Regge model to analyze the available world data of charge exchange meson production with beam momentum above 5 GeV in the laboratory frame that are not dominated by either pion or Pomeron exchanges. We determine the Regge residues and point out the kinematic regimes which are dominated by factorizable contributions.

Authors:
 [1];  [2];  [3];  [4];  [5];  [3];  [6];  [7];  [8]
  1. Ghent Univ. (Belgium). Dept. of Physics and Astronomy; Indiana Univ., Bloomington, IN (United States). Center for Exploration of Energy and Matter. Physics Dept.
  2. Johannes Gutenberg Univ. Mainz (Germany). Inst. of Nuclear Physics. PRISMA Cluster of Excellence
  3. Thomas Jefferson National Accelerator Facility (TJNAF), Newport News, VA (United States). Theory Center
  4. National Autonomous Univ. of Mexico, Mexico City (Mexico). Inst. of Nuclear Sciences
  5. Indiana Univ., Bloomington, IN (United States). Center for Exploration of Energy and Matter. Physics Dept.
  6. Ghent Univ. (Belgium). Dept. of Physics and Astronomy
  7. Indiana Univ., Bloomington, IN (United States). Center for Exploration of Energy and Matter. Physics Dept.; Thomas Jefferson National Accelerator Facility (TJNAF), Newport News, VA (United States). Theory Center
  8. Indiana Univ., Bloomington, IN (United States). School of Informatics and Computing
Publication Date:
Research Org.:
Thomas Jefferson National Accelerator Facility (TJNAF), Newport News, VA (United States); Indiana Univ., Bloomington, IN (United States); Ghent Univ. (Belgium); National Autonomous Univ. of Mexico, Mexico City (Mexico)
Sponsoring Org.:
USDOE Office of Science (SC), Nuclear Physics (NP) (SC-26); National Science Foundation (NSF); Research Foundation - Flanders (FWO) (Belgium); National Autonomous Univ. of Mexico (UNAM) (Mexico); National Council of Science and Technology (CONACYT) (Mexico)
Contributing Org.:
Joint Physics Analysis Center
OSTI Identifier:
1465623
Alternate Identifier(s):
OSTI ID: 1466673
Report Number(s):
JLAB-THY-18-2736; DOE/OR/23177-4463; arXiv:1806.01891
Journal ID: ISSN 2470-0010
Grant/Contract Number:  
AC05-06OR23177; FG02-87ER40365; PHY-1415459; PHY-1205019; PHY-1513524; IA101717; 251817
Resource Type:
Published Article
Journal Name:
Physical Review D
Additional Journal Information:
Journal Volume: 98; Journal Issue: 3; Journal ID: ISSN 2470-0010
Publisher:
American Physical Society (APS)
Country of Publication:
United States
Language:
English
Subject:
72 PHYSICS OF ELEMENTARY PARTICLES AND FIELDS; 73 NUCLEAR PHYSICS AND RADIATION PHYSICS; diffractive production; fragmentation into hadrons; hadron-hadron interactions

Citation Formats

Nys, J., Blin, A. N. Hiller, Mathieu, V., Fernández-Ramírez, C., Jackura, A., Pilloni, A., Ryckebusch, J., Szczepaniak, A. P., and Fox, G. Global analysis of charge exchange meson production at high energies. United States: N. p., 2018. Web. doi:10.1103/PhysRevD.98.034020.
Nys, J., Blin, A. N. Hiller, Mathieu, V., Fernández-Ramírez, C., Jackura, A., Pilloni, A., Ryckebusch, J., Szczepaniak, A. P., & Fox, G. Global analysis of charge exchange meson production at high energies. United States. doi:10.1103/PhysRevD.98.034020.
Nys, J., Blin, A. N. Hiller, Mathieu, V., Fernández-Ramírez, C., Jackura, A., Pilloni, A., Ryckebusch, J., Szczepaniak, A. P., and Fox, G. Tue . "Global analysis of charge exchange meson production at high energies". United States. doi:10.1103/PhysRevD.98.034020.
@article{osti_1465623,
title = {Global analysis of charge exchange meson production at high energies},
author = {Nys, J. and Blin, A. N. Hiller and Mathieu, V. and Fernández-Ramírez, C. and Jackura, A. and Pilloni, A. and Ryckebusch, J. and Szczepaniak, A. P. and Fox, G.},
abstractNote = {Many experiments that are conducted to study the hadron spectrum rely on peripheral resonance production. Hereby, the rapidity gap allows the process to be viewed as an independent fragmentation of the beam and the target, with the beam fragmentation dominated by production and decays of meson resonances. We test this separation by determining the kinematic regimes that are dominated by factorizable contributions, indicating the most favorable regions to perform this kind of experiments. In doing so, we use a Regge model to analyze the available world data of charge exchange meson production with beam momentum above 5 GeV in the laboratory frame that are not dominated by either pion or Pomeron exchanges. We determine the Regge residues and point out the kinematic regimes which are dominated by factorizable contributions.},
doi = {10.1103/PhysRevD.98.034020},
journal = {Physical Review D},
number = 3,
volume = 98,
place = {United States},
year = {2018},
month = {8}
}

Journal Article:
Free Publicly Available Full Text
Publisher's Version of Record
DOI: 10.1103/PhysRevD.98.034020

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