PaperPanorama

Nuclear Theory·nucl-th

Thursday·September 20, 2018

8 papers4 primary·4 cross-listed

  1. 01

    Dilepton Radiation in Heavy-Ion Collisions at Small Transverse Momentum

    Mariola Klusek-Gawenda🇵🇱 · Ralf Rapp🇺🇸 · Wolfgang Schäfer🇵🇱 · Antoni Szczurek🇵🇱

    We study the invariant-mass distributions of dileptons produced in ultrarelativistic heavy-ion collisions at very low pair transverse momenta, GeV. Specifically, we investigate the interplay of thermal radiation with initial photon annihilation processes, , triggered by the coherent electromagnetic fields of the incoming nuclei. For the thermal radiation, we employ the emission from the QGP and hadronic phases with in-medium vector spectral functions which describes the inclusive excess radiation observed over a wide range of collision energies. For the coherent photon fusion processes, whose spectrum is much softer than for thermal radiation, we employ initial fluxes from the Fourier transform of charge distributions of the colliding nuclei in the equivalent-photon approximation. We first verify that the combination of photon fusion, thermal radiation and final-state hadron decays gives a fair description of the low- dilepton mass spectra as recently measured by the STAR collaboration in =200 GeV Au+Au collisions for different centrality classes, including experimental acceptance cuts. The coherent contribution dominates in peripheral collisions, while thermal radiation shows a markedly stronger increase with centrality. We perform similar calculations at lower collision energies (=17.3 GeV) and compare to the acceptance-corrected dimuon excess spectra measured by the NA60 experiment at the CERN SPS; here, the contribution from photoproduction is subleading. We also provide predictions for the ALICE experiment at the LHC; the pertinent excitation function from SPS to LHC energies reveals a nontrivial interplay of photoproduction and thermal radiation.

    nucl-thhep-phPLB(2019)·44 citations
  2. 02

    A cross-validation check in the covariance analysis of isospin sensitive observables from heavy ion collision

    Ilona Bednarek🇵🇱 · Jacek Syska🇵🇱 · Jan Sładkowski🇵🇱

    This paper focuses on two problems. The first is related to the consistency checks of the complete correlation coefficients between two groups of variables obtained in Phys. Lett. B 749, 262 (2015). The first group collects parameters that describe properties of nuclear matter referring to the transport model involved. The second one is a group of observables adopted in the heavy ion collision experiments. The second problem concerns the method of determining the values of pure correlations between some variables in heavy ion collision. The application of this method for the analysis of the correlations of the isospin sensitive variables is pointed out.

    nucl-thhep-ph0 citations
  3. 03

    On the width of the in and states

    Jouni A. Niskanen🇫🇮

    Due to the finite kinetic energy in the intermediate state the (internal) energy available for mesonic decay is decreased and consequently the effective width is suppressed in scattering. The same can happen also in case. Also the angular momentum suppresses the width as well, while the effect of the initial angular momentum is more subtle. The state dependence affects e.g. pion production observables and can also be seen as the origin of T=1 "dibaryons".

    nucl-thEPJ Web Conf.(2019)·0 citations
  4. 04

    Nuclear transition matrix elements for neutrinoless double- decay within mechanisms involving light Majorana neutrino mass and right-handed current

    Yash Kaur Singh🇮🇳 · R. Chandra🇮🇳 · K. Chaturvedi🇮🇳 · Tripti Avasthi🇮🇳 · P.K. Raina🇮🇳 · P.K. Rath🇮🇳

    Employing the projected-Hartree-Fock-Bogoliubov (PHFB) model in conjunction with four different parametrizations of pairing plus multipolar effective two body interaction and three different parametrizations of Jastrow short range correlations, nuclear transition matrix elements for the neutrinoless double- decay of Zr, Mo, Pd, Te and Nd isotopes are calculated within mechanisms involving light Majorana neutrino mass and right handed current. Statistically, model specific uncertainties in sets of twelve nuclear transition matrix elements are estimated by calculating the averages along with the standard deviations. For the considered nuclei, \ the most stringent extracted on-axis limits on the effective light Majorana neutrino mass , the effective weak coupling of right-handed leptonic current with right-handed hadronic current , and the effective weak coupling of right-handed leptonic current with left-handed hadronic current \ from the observed limit on half-life of Te isotope are eV, and , respectively.

    nucl-thIJMPE(2019)·1 citation

Affiliations

first authorsco-authorsvia INSPIRE