Quasiscaling in the analysis of the yield ratio : Mathematical structure and estimation of source size
arXiv:hep-ph/9702347 · doi:10.1103/PhysRevC.55.2615
Abstract
Recently we have found that integral of the squared Coulomb wave function describing systemcomposed of charged pion and central charged fragment protons, , times pion source function (of the size ), $\intdr |ψ_r(r)|^2 ρ(r)$, shows a quasiscaling behavior. This is approximately invariant under the following transformation: ; . We called such behavior quasiscaling. We examine this quasiscaling behavior in detail. In particular we provide a semi-analytical examination of this behavior and confirm it for the exponential pionic source functions in addition to the Gaussian ones and for the production of K mesons as well. When combined with the results of the HBT, a result of the yield ratio allows us to estimate the size of the central charged fragment (CCF) to be for Pb+Pb collisions at energy 158 GeV/nucleon. From our estimation, the baryon number density [1/fm^3] is obtained.
7 pages, RevTex, 6figures
Cited by in corpus (4)
- Effects of retarded electrical fields on observables sensitive to the high-density behavior of nuclear symmetry energy in heavy-ion collisions at intermediate energies
- Coulomb Effect: A Possible Probe for the Evolution of Hadronic Matter
- Pion Freeze-Out Time in Pb+Pb Collisions at 158 A GeV/c Studied via pi-/pi+ and K-/K+ Ratios
- Analysis of Bose-Einstein correlations in e+e- -> W+W- events including final state interactions