PaperPanorama

Nuclear Theory·nucl-th

Thursday·September 12, 2019

6 papers1 primary·5 cross-listed

  1. 02

    Oscillating nuclear electric dipole moments inside atoms

    Victor V. Flambaum🇦🇺 · Dmitry Budker🇩🇪 · Arne Wickenbrock🇩🇪

    Interaction with the axion dark matter (DM) field generates an oscillating nuclear electric dipole moment (EDM) with a frequency corresponding to the axion's Compton frequency. Within an atom, an oscillating EDM can drive electric dipole transitions in the electronic shell. In the absence of radiation, and if the axion frequency matches a dipole transition, it can promote the electron into the excited state. The excitation events can be detected, for example, via subsequent uorescence or photoionization. Here we calculate the rates of such transitions. For a single light atom and an axion Compton frequency resonant with a transition energy corresponding to 1 eV, the rate is on the order of 10^(-22) per year, so a macroscopic atomic sample would be needed. A fundamental challenge is discriminating against background processes that may lead to the excitation of the same electric dipole transition. The ways to enhance the signals to potentially observable levels exceeding backgrounds and to search for axions in an extended frequency range are discussed.

    physics.atom-phastro-ph.IMnucl-th3 citations
  2. 03

    Exploration of the phase diagram and the thermodynamic properties of QCD at finite temperature and chemical potential with the PNJL effective model

    M.Motta🇮🇹 · W.M.Alberico🇮🇹 · A.Beraudo🇮🇹 · P.Costa🇵🇹 · R.Stiele🇮🇹

    The QCD transition from a hadronic to a quark-gluon plasma phase is a cross-over at vanishing/small baryo-chemical potential, while at higher chemical potentials it is argued that it becomes of first order, ending with a critical end-point. The present goal is the determination of the critical line and, possibly, the recognition of the critical endpoint. For this purpose, the effective model (Nambu-Jona-Lasinio model with Polyakov Loop) with 2+1 flavours is used. In Mean Field Approximation it is possible to obtain all thermodynamic quantities (pressure, entropy, energy and quark density) and their fluctuations, in particular, the generalized quark-number susceptibilities. We use the net baryon-number fluctuations and net-strangeness fluctuations to identify the critical line and the order of the phase transition in the chemical potential - temperature plane.

    hep-phnucl-thJ.Phys.Conf.Ser.(2020)·2 citations
  3. 04

    Quenching of gamma0 transition results from p-wave neutron inducing doorway mechanism

    T. F. Wang · X. T. Yang · T. Katabuchi · Z. M. Li · L. H. Zhu · M. W. Lee · G. N. Kim · T. I. Ro · Y. R. Kang · M. Igashira

    Gamma-strength function essentially distinguishes the reaction mechanisms of charged particle inelastic and neutron capture reactions, reflecting from the ratios of transition of neutron capture to low-lying states. The extraordinary quenching of gamma_0 transition of p-wave neutron resonance reaction in 3s-region nucleus 57Fe is observed, for the first time, due to the non-forming 2p-1h doorway state activation which raises the strong intensities of gamma_1 and gamma_2. The enhancement of low energy gamma-strength function doesn't emerge in the neutron capture reaction resulting from the population of cascade transitions of low-lying states rather than primary transitions. The astrophysical reaction rates that are extracted from total and partial neutron capture cross sections of 57Fe might be adopted to constrain the abundance of the successive heavier isotopes in s-process.

    nucl-exnucl-th0 citations
  4. 05

    Supernarrow Dibaryons

    L.V. Fil'kov🇷🇺

    An analysis of the experimental search for supernarrow dibaryons (SNDs) have been performed. The sum rules for SND masses have been constructed. The calculated values of the SND masses are in good agreement with the existing experimental values. It has been shown that the SND decay leads to the formation of N* with small masses. Experimental observations of N* is an additional confirmation of the possibility of the SND existence.

    hep-phnucl-thPhys.Part.Nucl.(2019)·0 citations
  5. 06

    Dynamic fast flavor oscillation waves in dense neutrino gases

    Joshua D. Martin🇺🇸 · Changhao Yi🇺🇸 · Huaiyu Duan🇺🇸

    The flavor transformation in a dense neutrino gas can have a significant impact on the physical and chemical evolution of its surroundings. In this work we demonstrate that a dynamic, fast flavor oscillation wave can develop spontaneously in a one-dimensional (1D) neutrino gas when the angular distributions of the electron neutrino and antineutrino cross each other. Unlike the 2D stationary models which are plagued with small-scale flavor structures, the fast flavor oscillation waves remain coherent in the dynamic 1D model in both the position and momentum spaces of the neutrino. The electron lepton number is redistributed and transported in space as the flavor oscillation wave propagates, although the total lepton number remains constant. This result may have interesting implications in the neutrino emission in and the evolution of the compact objects such as core-collapse supernovae.

    hep-phastro-ph.HEnucl-thPLB(2020)·97 citations

Affiliations

first authorsco-authorsvia INSPIRE