PaperPanorama

Nuclear Experiment·nucl-ex

Thu·Mar 28, 2019

3 papers2 primary·1 cross-listed·reconstructed*

  1. 01*

    Electric and magnetic dipole modes in high-resolution inelastic proton scattering at

    Peter von Neumann-Cosel (1) · Atsushi Tamii (2) ((1) Institut für Kernphysik, Technische Universität Darmstadt, Germany, (2) Research Center for Nuclear Physics, Osaka University, Japan)

    Inelastic proton scattering under extreme forward angles including and at energies of a few hundred MeV has been established as a new spectroscopic tool for the study of complete dipole strength distributions in nuclei. Such data allow an extraction of the electric dipole polarizability which provides important constraints parameters of the symmetry energy, which determine the neutron skin thickness and the equation of state (EOS) of neutron-rich matter. Also new insight into the much-debated nature of the pygmy dipole resonance (PDR) is obtained. Additionally, the isovector spin-M1 resonance can be studied in heavy nuclei, where only limited experimental information exists so far. Together with much improved results on the isoscalar spin-M1 strength distributions in nuclei, these data shed new light on the phenomenon of quenching of the nuclear spin response. Using dispersion matching techniques, high energy resolution ( full width at half maximum, FWHM) can be achieved in the experiments. In spherical-vibrational nuclei considerable fine structure is observed in the energy region of the isovector giant dipole resonance (IVGDR). A quantitative analysis of the fine structure with wavelet methods provides information on the role of different damping mechanisms contributing to the width of the IVGDR. Furthermore, level densities can be extracted from a fluctuation analysis at excitation energies well above neutron threshold, a region hardly accessible by other means. The combination of the gamma strength function (GSF) extracted from the E1 and M1 strength distributions with the independently derived level density permits novel tests of the Brink-Axel hypothesis underlying all calculations of statistical model reaction cross sections in astrophysical applications in the energy region of the PDR.

    nucl-exnucl-thEPJA(2019)·52 citations
  2. 02*

    Study of multi-neutron systems with SAMURAI spectrometer

    Z. H. Yang · F. M. Marqués · N. L. Achouri · D. S. Ahn · T. Aumann · H. Baba · D. Beaumel · M. Böhmer · K. Boretzky · M. Caamaño · S. Chen · N. Chiga and 86 other authors

    The tetraneutron has been drawing the attention of the nuclear physics community for decades, but a firm conclusion on its existence and properties is still far from being reached despite many experimental and theoretical efforts. New measurements have recently been performed at RIBF with the SAMURAI spectrometer by applying complementary reaction probes, which will help to pin down the properties of this four-neutron system.

    nucl-exSpringer Proc.Phys.(2020)·1 citation
  3. 03*

    Benchmark values for the net proton number fluctuations

    Boris Tomasik🇸🇰 · Ivan Melo🇸🇰 · Lukas Laffers🇸🇰 · Marcus Bleicher🇩🇪

    We formulate a baseline model for the net-proton number fluctuations in ultrarelativistic heavy-ion collisions. Our model includes total baryon number conservation, fluctuations of the participating nucleon number, limited acceptance, and a possibility that isospin is remembered by the participating wounded nucleons. Most importantly, we formulated the model as consisting of two components: wounded nucleons and the produced nucleon-antinucleon pairs. Those two components have different rapidity distributions. Owing to this feature we obtain also predictions for the rapidity dependence of the cumulants of the net-proton number distribution and their ratios.

    nucl-thhep-phnucl-exPoS(2019)·1 citation

* Reconstructed cohort: no mailing for this day survives in the archive. Papers are grouped by their submission times and arXiv's announcement cut-off, assuming announcement without delay; positions follow identifier order. Validated at ~91% exact-day agreement against the archived era.