8,555 research outputs found
Double pion production in and collisions
With an effective Lagrangian approach, we give a full analysis on the and reactions by exploring the roles of
various resonances with mass up to 1.72 GeV. We find large contributions from
, , and resonances. Our
calculations also indicate sizeable contributions from nucleon poles for the
energies close to the threshold. A good description to the existing data of
different isospin channels of and
for beam energies up to 2.2 GeV is reached. Our results provide important
implications to the ABC effect and guildlines to the future experimental
projects at COSY, HADES and HIRFL-CSR. We point out that the \={P}ANDA at FAIR
could be an essential place for studying the properties of baryon resonances
and the data with baryon and anti-baryon in final states are worth analyzing.Comment: Invited plenary talk at the 11th International Workshop on Meson
Production, Properties and Interaction (MESON2010), 10-15 June, 2010, Krakow,
Polan
Phenomenological analysis of the double pion production in nucleon-nucleon collisions up to 2.2 GeV
With an effective Lagrangian approach, we analyze several NN \to NN\pi\pi
channels by including various resonances with mass up to 1.72 GeV. For the
channels with the pion pair of isospin zero, we confirm the dominance of
N*(1440)\to N\sigma in the near threshold region. At higher energies and for
channels with the final pion pair of isospin one, we find large contributions
from N*(1440)\to \Delta\pi, double-Delta, \Delta(1600) \to N*(1440)\pi,
\Delta(1600) \to \Delta\pi and \Delta(1620) \to \Delta\pi. There are also
sizeable contributions from \Delta \to \Delta\pi, \Delta \to N\pi, N \to
\Delta\pi and nucleon pole at energies close to the threshold. We well
reproduce the total cross sections up to beam energies of 2.2 GeV except for
the pp\to pp\pi^0\pi^0 channel at energies around 1.1 GeV and our results agree
with the existing data of differential cross sections of pp \to pp\pi^+\pi^-,
pp \to nn\pi^+\pi^+ and pp \to pp\pi^0\pi^0 which are measured at CELSIUS and
COSY.Comment: 36 pages, 18 figure
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