PaperPanorama

Nuclear Theory·nucl-th

Thursday·April 22, 2021

6 papers2 primary·4 cross-listed

  1. 01

    Investigations on mixed harmonic cumulants in heavy-ion collisions at the LHC

    Ming Li🇨🇳 · You Zhou🇩🇰 · Wenbin Zhao🇨🇳 · Baochi Fu🇨🇳 · Yawen Mou🇨🇳 · Huichao Song🇨🇳

    A series of new flow observables mixed harmonic multi-particle cumulants (MHC), which allow for the first time to quantify the correlations strength between different order of flow coefficients with various moments, was investigated using hydrodynamic model. These new observables are constructed based on multi-particle cumulants, and thus by design will be less sensitive to the non-flow contaminations. In addition to the previous study of correlation involving two flow coefficients with their second moments, both correlations of three flow coefficients and the correlations of higher order moments of and are systematically investigated using iEBE-VISHNU hybrid model with two different initial conditions, AMPT and TRENTo, respectively. These systematic studies using hydrodynamic models will significantly improve the understanding on the correlations between different orders (and moments) of flow coefficients. The hydrodynamic predictions shown in this paper and the future comparisons to experimental measurements will provide more constraints on theoretical models and extract more information about the transport properties of the quark-gluon plasma created in heavy-ion collisions.

    nucl-thhep-phnucl-exPRC(2021)·12 citations
  2. 02

    Detailed study of decay properties of 7He nucleus states in ab initio approach

    D. M. Rodkin🇷🇺 · Yu. M. Tchuvil'sky🇷🇺

    The energies and decay widths of the states of the exotic 7He nucleus are studied in an ab initio approach. The spectrum of these states is calculated using No-Core Shell Model and corresponding extrapolation procedure. Well-proven on a large amount of data the Daejeon16 potential is used in the calculations. The previously developed NCSM-based approach, which includes a method for constructing the basis of orthogonalized functions of cluster channels and a procedure for matching the cluster form factors obtained within this method with the corresponding asymptotic wave functions, is applied to compute the decay widths of the levels. The possibilities of the approach for calculating the partial decay widths of nuclear states into various channels strongly differing in type of fragmentation, spin, angular momentum of relative motion, and amplitude are demonstrated. The results obtained are compared with the results of other microscopic calculations.

    nucl-thPRC(2021)·17 citations

Affiliations

first authorsco-authorsvia INSPIRE