PaperPanorama

Nuclear Theory·nucl-th

Monday·June 18, 2018

7 papers3 primary·4 cross-listed

  1. 01

    From Experimental Data to Pole Parameters in a Direct Way (Angle Dependent Continuum Ambiguity and Laurent + Pietarinen Expansion)

    A. Švarc🇭🇷 · Y. Wunderlich🇩🇪 · H. Osmanović🇧🇦 · M. Hadžimehmedović🇧🇦 · R. Omerović🇧🇦 · J. Stahov🇧🇦 · V. Kashevarov🇩🇪 · K. Nikonov🇩🇪 · M. Ostrick🇩🇪 · L. Tiator🇩🇪 · R. Workman🇺🇸

    Unconstrained partial-wave amplitudes obtained at discrete energies from fits to complete sets of eight independent observables which are required to uniquely reconstruct reaction amplitudes do not vary smoothly with energy, and are in principle non-unique. We demonstrate how this behavior can be ascribed to the continuum ambiguity. Starting from the spinless scattering case, we demonstrate how an unknown overall phase depending on energy and angle mixes the structures seen in the associated partial-wave amplitudes making the partial wave decomposition non-unique, and illustrate it on a simple toy model. We then apply these principles to pseudo-scalar meson photoproduction and show that the non-uniqueness effect can be removed through a phase rotation generating "up-to-a-phase" unique set of SE partial wave amplitudes. Extracting pole positions from partial wave amplitudes is the next step. Up to now, there was no reliable way to extract pole parameters from SE partial waves, but a new and simple single-channel method (Laurent + Pietarinen expansion) applicable for continuous and discrete data has been recently developed. It is based on applying the Laurent decomposition of partial wave amplitude, and expanding the nonresonant background into a power series of a conformal-mapping, quickly converging power series obtaining the simplest analytic function with well-defined partial wave analytic properties which fits the input. The generalization of this method to multi- channel case is also developed and presented. Unifying both methods in succession, one constructs a model independent procedure to extract pole parameters directly from experimental data without referring to any theoretical model.

    nucl-thFew Body Syst.(2018)·5 citations
  2. 02

    Fusion cross-section for Ni-based reactions within the relativistic mean field formalism

    M. Bhuyan · Raj Kumar

    In this theoretical study, we establish an interrelationship between the nucleon-nucleon interaction potential and the nuclear fusion reaction cross-sections at low energies. The axially deformed self-consistent relativistic mean field with non-linear NL3 force is used to calculate the density distribution of the projectile and target nuclei for fusion. The Wong formula is used to estimate the fusion cross-section and barrier distribution from the nucleus-nucleus optical potential for Ni-based systems, which are known for fusion hindrance phenomena. The results of the application of the so obtained nucleus-nucleus optical potential for the fusion cross-section from the recently developed relativistic interaction (R3Y) are compared with the well-known, phenomenological M3Y effective potential. We found a relatively good results from R3Y interactions below the barrier energies as compare to the M3Y potential concerning the experimental data. We also observe the density dependence on the nuclear interaction potential in terms of nucleon-nucleon optical potentials.

    nucl-thPRC(2018)·48 citations
  3. 03

    Pseudorapidity and initial energy densities in p+p and heavy ion collisions at RHIC and LHC

    Z-F. Jiang🇨🇳 · M. Csanad🇭🇺 · G. Kasza🇭🇺 · C-B. Yang🇨🇳 · T. Csorgo🇭🇺

    A known exact and accelerating solution of relativistic hydrodynamics for perfect fluids is utilized to describe pseudorapidity densities of TeV PbPb and TeV collisions at LHC. We evaluate a conjectured initial energy densities in these collisions, and compare them to Bjorken's initial energy density estimates, and to results for PbPb collisions at TeV and collisions at and 8 TeV.

    nucl-thhep-phActa Phys. Pol. B Proc. Suppl. vol. 12 (2…·12 citations

Affiliations

first authorsco-authorsvia INSPIRE