PaperPanorama

Nuclear Theory·nucl-th

Wednesday·May 17, 2017

10 papers7 primary·3 cross-listed

  1. 01

    [Submitted on 15 May 2017]

    Pairing and deformation effects in nuclear excitation spectra

    A. Repko · J. Kvasil · V.O. Nesterenko · P.-G. Reinhard

    We investigate effects of pairing and of quadrupole deformation on two sorts of nuclear excitations,-vibrational states and dipole resonances (isovector dipole, pygmy, compression, toroidal). The analysis is performed within the quasiparticle random-phase approximation (QRPA) based on the Skyrme energy functional using the Skyrme parametrization SLy6. Particular attention is paid to i) the role of the particle-particle (pp) channel in the residual interaction of QRPA, ii) comparison of volume pairing (VP) and surface pairing (SP), iii) peculiarities of deformation splitting in the various resonances. We find that the impact of the pp-channel on the considered excitations is negligible. This conclusion applies also to any other excitation except for the states. Furthermore, the difference between VP and SP is found small (with exception of peak height in the toroidal mode). In the low-energy isovector dipole (pygmy) and isoscalar toroidal modes, the branch is shown to dominate over one in the range of excitation energy 8--10 MeV. The effect becomes impressive for the toroidal resonance whose low-energy part is concentrated in a high peak of almost pure nature. This peculiarity may be used as a fingerprint of the toroidal mode in future experiments. The interplay between pygmy, toroidal and compression resonances is discussed, the interpretation of the observed isoscalar giant dipole resonance is partly revised.

    Comments:
    12 pages, 12 figures
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    1705.05436 [pdf]
    EPJA(2017)·28 citations
  2. 02

    [Submitted on 16 May 2017]

    Ab initio electromagnetic observables with the in-medium similarity renormalization group

    N. M. Parzuchowski🇺🇸 · S. R. Stroberg🇨🇦 · P. Navrátil🇨🇦 · H. Hergert🇺🇸 · S. K. Bogner🇺🇸

    We present the formalism for consistently transforming transition operators within the in-medium similarity renormalization group framework. We implement the operator transformation in both the equations-of-motion and valence-space variants, and present first results for electromagnetic transitions and moments in medium-mass nuclei using consistently-evolved operators, including the induced two-body parts. These results are compared to experimental values, and--where possible--the results of no-core shell model calculations using the same input chiral interaction. We find good agreement between the equations-of-motion and valence space approaches. Magnetic dipole observables are generally in reasonable agreement with experiment, while the more collective electric quadrupole and octupole observables are significantly underpredicted, often by over an order of magnitude, indicating missing physics at the present level of truncation.

    Comments:
    19 pages, 13 figures, 3 tables
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    1705.05511 [pdf]
    PRC(2017)·92 citations
  3. 03

    [Submitted on 16 May 2017]

    Comment on "Three-dimensional study of the six-body bound-state for the case of effective three-body configuration model" [Int. J. Mod. Phys. E 25, 9 (2016) 1650072]

    M. R. Hadizadeh · M. Radin · S. Bayegan

    The authors argue that the calculated He binding energies by the solution of the coupled Faddeev-Yakubovsky integral equation in a Three-dimensional scheme reported by E. Ahmadi Pouya and A. A. Rajabi [Int. J. Mod. Phys. E 25, 9 (2016) 1650072] are incorrect. The formalism of the paper has serious mistakes and the numerical results are quite misleading because such a calculation even with small grids for Jacobi momenta and the angle variables leads to a huge memory of 37.8 PB (petabyte) which cannot even be achieved on present supercomputers.

    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    1705.05538 [pdf]
    IJMPE(2017)·1 citation
  4. 04

    [Submitted on 16 May 2017]

    Description of odd-mass nuclei within the interacting boson-fermion model based on the Gogny energy density functional

    K. Nomura · R. Rodríguez-Guzmán · L. M. Robledo

    Spectroscopic properties of odd-mass nuclei are studied within the framework of the interacting boson-fermion model (IBFM) with parameters based on the Hartree-Fock-Bogoliubov (HFB) approximation. The parametrization D1M of the Gogny energy density functional (EDF) has been used at the mean-field level to obtain the deformation energy surfaces for the considered nuclei in terms of the quadrupole deformations (). In addition to the energy surfaces, both single particle energies and occupation probabilities have been used as a microscopic input for building the IBFM Hamiltonian. Only three strength parameters for the particle-boson-core coupling are fitted to experimental spectra. The IBFM Hamiltonian is then used to compute the energy spectra and electromagnetic transition rates for selected odd-mass Eu and Sm nuclei as well as for Pt and Au. A reasonable agreement with the available experimental data is obtained for the considered odd-mass nuclei.

    Comments:
    14 pages, 16 figures, 9 tables
    Subjects:
    Nuclear Theory (nucl-th); Nuclear Experiment (nucl-ex)
    arXiv:
    1705.05539 [pdf]
    PRC(2017)·24 citations
  5. 05

    [Submitted on 16 May 2017]

    Production of Charm Quarks in a Parton Cascade Model for Relativistic Heavy Ion Collisions at = 200 GeV

    Dinesh K. Srivastava🇮🇳 · Steffen A. Bass🇺🇸 · Rupa Chatterjee🇮🇳

    We study the production and dynamics of heavy quarks in the parton cascade model for relativistic heavy ion collisions. The model is motivated by the QCD parton picture and describes the dynamics of an ultra-relativistic heavy-ion collision in terms of cascading partons which undergo scattering and multiplication while propagating. We focus on the dynamics of charm quark production and evolution in p+p and Au+Au collisions for several different interaction scenarios, i.e. collisions only between primary partons without radiation of gluons, multiple collisions without radiation of gluons and multiple collisions with radiation of gluons, allowing us to isolate the contributions of parton rescattering and radiation to charm production. We also discuss results of an eikonal approximation of the collision which provides a valuable comparison with mini-jet calculations and clearly brings out the importance of multiple collisions.

    Comments:
    17 pages, 18 figures, 2 tables. 1 new figure, more references and discussions added. Accepted for publication in Physical Review C
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    1705.05542 [pdf]
    PRC(2017)·9 citations
  6. 06

    [Submitted on 16 May 2017]

    Magneto-Vortical evolution of QGP in heavy ion collisions

    Ashutosh Dash🇮🇳 · Victor Roy🇮🇳 · Bedangadas Mohanty🇮🇳

    The interplay of magnetic field and thermal vorticity in a relativistic ideal fluid might generate fluid vorticity during the fluid evolution provided the flow fields and the entropy density of the fluid is inhomogeneous \cite{Mahajan:2010}. Exploiting this fact and assuming large magnetic Reynolds number we study the evolution of generalised magnetic field () which is defined as a combination of the usual magnetic field () and relativistic thermal vorticity (), in a 2(space)+1(time) dimensional isentropic evolution of Quark Gluon Plasma (QGP) with longitudinal boost invariance. The temporal evolution of is found to be different than , and the evolution also depends on the position of the fluid along the beam direction (taken along the z axis) with respect to the mid-plane . Further it is observed that the transverse components (, ) evolve differently around the mid-plane.

    Comments:
    8 pages, 2 figures
    Subjects:
    Nuclear Theory (nucl-th)
    arXiv:
    1705.05657 [pdf]
    J.Phys.G(2019)·11 citations
  7. 07

    [Submitted on 16 May 2017]

    Spectral shapes of forbidden argon beta decays as background component for rare-event searches

    J. Kostensalo🇫🇮 · J. Suhonen🇫🇮 · K. Zuber🇩🇪

    The spectral shape of the electrons from the two first-forbidden unique beta- decays of Ar-39 and Ar-42 were calculated for the first time to the next-to-leading order. Especially the spectral shape of the Ar-39 decay can be used to characterise this background component for dark matter searches based on argon. Alternatively, due to the low thresholds of these experiments, the spectral shape can be investigated over a wide energy range with high statistics and thus allow a sensitive comparison with the theoretical predictions. This might lead to interesting results for the ratio of the weak vector and axial-vector constants in nuclei.

    Comments:
    9 pages, 6 figures, submitted
    Subjects:
    Nuclear Theory (nucl-th); High Energy Physics — Phenomenology (hep-ph); Nuclear Experiment (nucl-ex)
    arXiv:
    1705.05726 [pdf]
    J.Phys.G(2018)·11 citations

Affiliations

first authorsco-authorsvia INSPIRE