PaperPanorama

Nuclear Theory·nucl-th

Thursday·November 26, 2015

10 papers7 primary·3 cross-listed

  1. 08

    Spectral properties of the Goldstino in supersymmetric Bose-Fermi mixtures

    Jean-Paul Blaizot🇫🇷 · Yoshimasa Hidaka🇯🇵 · Daisuke Satow🇮🇹

    We evaluate the spectral properties of the Goldstino in a Bose-Fermi mixture of cold atoms and molecules whose dynamics is governed by a supersymmetric hamiltonian. Model independent results are obtained from sum rules obeyed by the spectral function. We carry out specific calculations, at zero and finite temperature, using the Random Phase Approximation, and obtain in particular analytic expressions for the dispersion relation at small momentum. These explicit calculations allow us to pin down more precisely the features of the Goldstino that can be attributed to the supersymmetry alone, together with its spontaneous breaking. The anomalous large effect of the Fermi sea at moderate and large momenta is emphasized.

    cond-mat.quant-gashep-phnucl-thPRA(2015)·17 citations
  2. 09

    Progenitor-dependent Explosion Dynamics in Self-consistent, Axisymmetric Simulations of Neutrino-driven Core-collapse Supernovae

    Alexander Summa (1) · Florian Hanke (1,2) · Hans-Thomas Janka (1) · Tobias Melson (1,2) · Andreas Marek (3) · Bernhard Müller (4,5) ((1) MPI Astrophysics, Garching, (2) TUM, Garching, (3) MPCDF, Garching, (4) Queen's Univ. Belfast, (5) Monash Univ., Victoria)

    We present self-consistent, axisymmetric core-collapse supernova simulations performed with the Prometheus-Vertex code for 18 pre-supernova models in the range of 11-28 solar masses, including progenitors recently investigated by other groups. All models develop explosions, but depending on the progenitor structure, they can be divided into two classes. With a steep density decline at the Si/Si-O interface, the arrival of this interface at the shock front leads to a sudden drop of the mass-accretion rate, triggering a rapid approach to explosion. With a more gradually decreasing accretion rate, it takes longer for the neutrino heating to overcome the accretion ram pressure and explosions set in later. Early explosions are facilitated by high mass-accretion rates after bounce and correspondingly high neutrino luminosities combined with a pronounced drop of the accretion rate and ram pressure at the Si/Si-O interface. Because of rapidly shrinking neutron star radii and receding shock fronts after the passage through their maxima, our models exhibit short advection time scales, which favor the efficient growth of the standing accretion-shock instability. The latter plays a supportive role at least for the initiation of the re-expansion of the stalled shock before runaway. Taking into account the effects of turbulent pressure in the gain layer, we derive a generalized condition for the critical neutrino luminosity that captures the explosion behavior of all models very well. We validate the robustness of our findings by testing the influence of stochasticity, numerical resolution, and approximations in some aspects of the microphysics.

    astro-ph.SRastro-ph.HEnucl-thApJ(2016)·128 citations
  3. 10

    Consistency check of charged hadron multiplicities and fragmentation functions in SIDIS

    Dong-Jing Yang🇹🇼 · Fu-Jiun Jiang🇹🇼 · Wen-Chen Chang🇹🇼 · Chung-Wen Kao🇹🇼 · Seung-il Nam🇰🇷

    We derived the conditions on certain combinations of integrals of the fragmentation functions of pion using HERMES data of the sum for the charged pion multiplicities from semi-inclusive deep-inelastic scattering (SIDIS) off the deuteron target. In our derivation the nucleon parton distribution functions (PDFs) are assumed to be isospin SU(2) symmetric. Similar conditions have also been obtained for the fragmentation functions (FFs) of kaon by the sum of charged kaon multiplicities as well. We have chosen several FFs to study the impact of those conditions we have derived. Among those FFs, only that produced in the nonlocal chiral-quark model (NLQM) constantly satisfy the conditions. Furthermore, the ratios of the strange PDFs and the nonstrange PDFs extracted from the charged pion and kaon multiplicities differ from each other significantly. Finally, we demonstrate that the HERMES pion multiplicity data is unlikely to be compatible with the two widely-used PDFs, namely CTEQ6M and NNPDF3.0.

    hep-phhep-exnucl-thPLB(2016)·8 citations

Affiliations

first authorsco-authorsvia INSPIRE