PaperPanorama

Nuclear Theory·nucl-th

Thursday·February 7, 2019

5 papers3 primary·2 cross-listed

  1. 04

    Comparison of AMD calculations with experimental data for peripheral collisions of 93Nb+93Nb,116Sn at 38 MeV/nucleon

    S.Piantelli · A.Olmi · P.R.Maurenzig · A.Ono · M.Bini · G.Casini · G.Pasquali · A.Mangiarotti · G.Poggi · A.A.Stefanini · S.Barlini · A.Camaiani and 4 other authors

    Experimental data concerning binary events in peripheral collisions for the systems 93Nb+93Nb and 93Nb+116Sn at 38 MeV/nucleon, collected with the Fiasco setup, are compared with calculations performed with the dynamic code AMD, coupled with the statistical code Gemini used as an afterburner. The comparison focuses on the properties of the quasiprojectile (QP) and on the total multiplicities of the emitted light charged particles. A good reproduction of the average mass ratio, charge Z and c.m. angle of the QP is obtained in the examined impact parameter range (b~7-12 fm). Concerning the light charged particles, a general agreement is found for the total emitted charge, while some discrepancy remains for the multiplicities of the various species, especially for the protons which are always overestimated by the calculations.

    nucl-exnucl-thPRC(2019)·26 citations
  2. 05

    A dispersive analysis of the pion vector form factor and decay

    Sergi Gonzàlez-Solís🇨🇳 · Pablo Roig🇲🇽

    We explore the potential of a combined analysis of the decays and in the determination of the and resonance properties in the frame of resonance Chiral Theory supplemented by dispersion relations. On the one hand, we take advantage of the very precise data on the modulus squared of the pion vector form factor obtained by Belle to carry out a very dedicated analysis of the region where these resonances come up into play. Our study provides an improved treatment of the systematic theoretical errors and, as a most important result, we conclude that they dominate over the fit uncertainties in the determination of the and pole parameters and tend to be larger than in other determinations quoted in the literature where these errors were ignored or underestimated. The results of our analysis are summarized in numerical tables for the form factor modulus and phase, including both statistical and systematic errors, that can be found as ancillary material of this paper. As a byproduct, we also determine the low-energy observables of the pion vector form factor and the -pole position. On the other hand, we benefit from the recent experimental data for the transition released by BaBar to perform a first analysis of its decay spectrum and discuss the role of these resonances in this decay. We point out that higher-quality data on the decay channel will allow compete with the ones and improve the determination of the and resonance parameters as a result of a combined analysis. We hope our study to be of interest for present and future experimental analysis of these decays.

    hep-phhep-exnucl-thEPJC(2019)·66 citations

Affiliations

first authorsco-authorsvia INSPIRE