PaperPanorama

Nuclear Theory·nucl-th

Monday·September 18, 2017

10 papers3 primary·7 cross-listed

  1. 01

    Static response, collective frequencies and ground state thermodynamical properties of spin saturated two-component cold atoms and neutron matter

    Antoine Boulet🇫🇷 · Denis Lacroix🇫🇷

    The thermodynamical ground-state properties and static response in both cold atoms at or close to unitarity and neutron matter are determined using a recently proposed Density Functional Theory (DFT) based on the s-wave scattering length , effective range , and unitary gas limit. In cold atoms, when the effective range may be neglected, we show that the pressure, chemical potential, compressibility modulus and sound velocity obtained with the DFT are compatible with experimental observations or exact theoretical estimates. The static response in homogeneous infinite systems is also obtained and a possible influence of the effective range on the response is analyzed. The neutron matter differs from unitary gas due to the non infinite scattering length and to a significant influence of effective range which affects all thermodynamical quantities as well as the static response. In particular, we show for neutron matter that the latter response recently obtained in Auxiliary-Field Diffusion Monte-Carlo (AFDMC) can be qualitatively reproduced when the p-wave contribution is added to the functional. Our study indicates that the close similarity between the exact AFDMC static response and the free gas response might stems from the compensation of the effect by the effective range and p-wave contributions. We finally consider the dynamical response of both atoms or neutron droplets in anisotropic traps. Assuming the hydrodynamical regime and a polytropic equation of state, a reasonable description of the radial and axial collective frequencies in cold atoms is obtained. Following a similar strategy, we estimate the equivalent collective frequencies of neutron drops in anisotropic traps.

    nucl-thcond-mat.quant-gasPRC(2018)·15 citations
  2. 02

    Isospin effect on baryon and charge fluctuations from the pNJL model

    He Liu🇨🇳 · Jun Xu🇨🇳

    We have studied the possible isospin corrections on the skewness and kurtosis of net-baryon and net-charge fluctuations in the isospin asymmetric matter formed in relativistic heavy-ion collisions at RHIC-BES energies, based on a 3-flavor polyakov-looped Nambu-Jona-Lasinio model. With typical scalar-isovector and vector-isovector couplings leading to the splitting of and quark chiral phase transition boundaries and critical points, we have observed dramatic isospin effects on the susceptibilities, especially those of net-charge fluctuations. Reliable experimental measurements at even lower collision energies are encouraged to confirm the observed isospin effects.

    nucl-thhep-exnucl-exUniverse(2020)·13 citations
  3. 03

    Neutrinoless double- decay of Sn, Te, and Xe in the Hamiltonian-based generator-coordinate method

    C. F. Jiao🇺🇸 · M. Horoi🇺🇸 · A. Neacsu🇺🇸

    We present a generator-coordinate method for realistic shell-model Hamiltonians that closely approximates the full shell model calculations of the matrix elements for the neutrinoless double- decay of Sn, Te, and Xe. We treat not only quadrupole deformations but also the proton-neutron pairing amplitudes as generator coordinates. We validate this method by calculating and comparing spectroscopic quantities with the exact shell model results and experimental data. Our Hamiltonian-based generator-coordinate method produces matrix elements much closer to the shell model ones, compared to the existing energy-density-functional-based generator-coordinate approaches. The remaining overestimation of nuclear matrix element suggests that additional correlations may be needed to be taken into account for Sn, Te, and Xe when calculating with the Hamiltonian-based generator-coordinate method. The validation of this method may open the possibility of calculating matrix element of Nd in a large shell-model space.

    nucl-thPRC(2018)·29 citations

Affiliations

first authorsco-authorsvia INSPIRE