PaperPanorama

Nuclear Theory·nucl-th

Tuesday·August 21, 2018

9 papers7 primary·2 cross-listed

  1. 01

    Revisiting the proton-radius problem using constrained Gaussian processes

    Shuang Zhou🇺🇸 · P. Giuliani🇺🇸 · J. Piekarewicz🇺🇸 · Anirban Bhattacharya🇺🇸 · Debdeep Pati🇺🇸

    Background: The "proton radius puzzle" refers to an eight-year old problem that highlights major inconsistencies in the extraction of the charge radius of the proton from muonic Lamb-shift experiments as compared against experiments using elastic electron scattering. For the latter, the determination of the charge radius involves an extrapolation of the experimental form factor to zero momentum transfer. Purpose: To estimate the proton radius by introducing a novel non-parametric approach to model the electric form factor of the proton. Methods: Within a Bayesian paradigm, we develop a model flexible enough to fit the data without any parametric assumptions on the form factor. The Bayesian estimation is guided by imposing only two physical constraints on the form factor: (a) its value at zero momentum transfer (normalization) and (b) its overall shape, assumed to be a monotonically decreasing function of the momentum transfer. Variants of these assumptions are explored to assess the impact of these constraints. Results: So far our results are inconclusive in regard to the proton puzzle, as they depend on both, the assumed constrains and the range of experimental data used. For example, if only low momentum-transfer data is used, adopting only the normalization constraint provides a value compatible with the smaller muonic result, while imposing only the shape constraint favors the larger electronic value. Conclusions: We have presented a novel technique to estimate the proton radius from electron scattering data based on a non-parametric Gaussian process. We have shown the impact of the physical constraints imposed on the form factor and of the range of experimental data used. In this regard, we are hopeful that as this technique is refined and with the anticipated new results from the PRad experiment, we will get closer to resolve of the puzzle.

    nucl-thnucl-exstat.APPRC(2019)·25 citations
  2. 02

    Quark Cluster Model Equations for Decay

    D. Strottman (Theoretical Division, LANL)🇺🇸 · J.D. Vergados (Physics Department, University of Ioannina, Greece)🇬🇷

    In a separate paper we have discussed the possibility that six quark clusters can affect the rate of double-beta decay. In this article we develop the formalism needed in the evaluation of the energy of all six-quark cluster configurations, which can arise in a harmonic oscillator basis up to excitations. The symmetries that were found useful for this purpose were the combined spin color symmetry , the orbital symmetry and the isospin symmetry .

    nucl-th3 citations
  3. 03

    A resummed method of moments for the relativistic hydrodynamic expansion

    L Tinti🇺🇸 · G Vujanovic🇺🇸 · J Noronha🇧🇷 · U Heinz🇺🇸

    The relativistic method of moments is one of the most successful approaches to extract second order viscous hydrodynamics from a kinetic underlying background. The equations can be systematically improved to higher order, and they have already shown a fast convergence to the kinetic results. In order to generalize that method, we introduced long range effects in the form of effective (medium dependent) masses and gauge (coherent) fields. The most straightforward generalization of the hydrodynamic expansion is problematic, or simply ill-defined, at higher order. Instead of introducing an additional set of approximations, we propose to rewrite the series in terms of moments resumming the contributions of infinite non-hydrodynamics modes. The resulting equations are consistent with hydrodynamics and well defined at all order. We tested the new approximation against the exact solutions of the Boltzmann-Maxwell-Vlasov equations in -dimensions, finding a fast and stable convergence to the exact results.

    nucl-thNPA(2019)·6 citations
  4. 04

    The cumulants of the baryon number from central Au+Au collision at = 1.23 GeVnucleon reveal the nuclear mean-field potentials

    Yunxiao Ye🇨🇳 · Yongjia Wang🇨🇳 · Jan Steinheimer🇩🇪 · Yasushi Nara🇩🇪 · Hao-jie Xu🇨🇳 · Pengcheng Li🇨🇳 · Dinghui Lu🇨🇳 · Qingfeng Li🇨🇳 · Horst Stoecker🇩🇪

    Fluctuations of the baryon number in relativistic heavy-ion collisions are a promising observable to explore the structure of the QCD phase diagram. The cumulant ratios in heavy ion collisions at intermediate energies ( GeV) have not been studied to date. We investigate the effects of mean field potential and clustering on the cumulant ratios of baryon and proton number distributions in Au+Au collisions at beam energy of 1.23 GeVnucleon as measured by the HADES Collaboration at GSI. Ultrarelativistic Quantum Molecular Dynamics (UrQMD) and the JAM model are used to calculate the cumulants with different mean field potentials. It is found that the cumulant ratios are strongly time dependent. At the early stage, the effects of the potentials on the fluctuations of the particle multiplicity in momentum space are relatively weak. The mean fields enhance the fluctuations during the expansion stage, especially for small rapidity acceptance windows. The enhancement of cumulant ratios for free protons is strongly suppressed as compared to that for all baryons. The mean field potentials and the clustering play an important role for the measured cumulant ratios at intermediate energy.

    nucl-thnucl-exPRC(2018)·16 citations
  5. 05

    Bulk Viscosity of Hot Quark Plasma from Non-Equilibrium Statistical Operator

    Arus Harutyunyan🇩🇪 · Armen Sedrakian🇩🇪

    We provide a discussion of the bulk viscosity of two-flavor quark plasma, described by the Nambu--Jona-Lasinio model, within the framework of Kubo-Zubarev formalism. This discussion, which is complementary to our earlier study, contains a new, detailed derivation of the bulk viscosity in the case of multiple conserved charges. We also provide some numerical details of the computation of the bulk viscosity close to the Mott transition line, where the dissipation is dominated by decays of mesons into quarks and their inverse processes. We close with a summary of our current understanding of this quantity, which stresses the importance of loop resummation for obtaining the qualitatively correct result near the Mott line.

    nucl-thhep-phhep-thParticles(2018)·5 citations
  6. 06

    Resummed hydrodynamic expansion for a plasma of particles interacting with fields

    L. Tinti🇺🇸 · G. Vujanovic🇺🇸 · J. Noronha🇧🇷 · U. Heinz🇨🇭

    A novel description of kinetic theory dynamics is proposed in terms of resummed moments that embed information of both hydrodynamic and non-hydrodynamic modes. The resulting expansion can be used to extend hydrodynamics to higher orders in a consistent and numerically efficient way; at lowest order it reduces to an Israel-Stewart-like theory. This formalism is especially suited to investigate the general problem of particles interacting with fields. We tested the accuracy of this approach against the exact solution of the coupled Boltzmann-Vlasov-Maxwell equations for a plasma in an electromagnetic field undergoing Bjorken-like expansion, including extreme cases characterized by large deviations from local equilibrium and large electric fields. We show that this new resummed method maintains the fast convergence of the traditional method of moments. We also find a new condition, unrelated to Knudsen numbers and pressure corrections, that justifies the truncation of the series even in situations far from local thermal equilibrium.

    nucl-thhep-phhep-thPRD(2019)·27 citations
  7. 07

    Beta-decay properties of neutron-rich Ca, Ti, and Cr isotopes

    P. Sarriguren · A. Algora · G. Kiss

    Beta-decay properties of neutron-rich Ca, Ti, and Cr isotopes are studied within a deformed proton-neutron quasiparticle random-phase approximation. The underlying mean field is described self-consistently from deformed Skyrme Hartree-Fock calculations with pairing correlations. Residual spin-isospin interactions in the particle-hole and particle-particle channels are also included in the formalism. The energy distributions of the Gamow-Teller strength, the beta-decay feedings, the beta-decay half-lives, and the beta-delayed neutron emission probabilities are discussed and compared with other theoretical results, as well as with the available experimental information. The evolution of these nuclear beta-decay properties is investigated in isotopic chains in a search for structural changes. A reliable estimate of the beta-decay properties in this mass region is a valuable information for evaluating decay rates in astrophysical scenarios.

    nucl-thPRC(2018)·15 citations

Affiliations

first authorsco-authorsvia INSPIRE