PaperPanorama

Nuclear Theory·nucl-th

Monday·July 13, 2015

5 papers3 primary·2 cross-listed

  1. 04

    Intriguing aspects of meson condensation

    Andrea Mammarella🇮🇹 · Massimo Mannarelli🇮🇹

    We analyze various aspects of pion and kaon condensation in the framework of chiral perturbation theory. Considering a system at vanishing temperature and varying the isospin chemical potential and the strange quark chemical potential we reproduce known results about the phase transition to the pion condensation phase and to the kaon condensation phase. However, we obtain mesonic mixings and masses in the condensed phases that are in disagreement with the results reported in previous works. Our findings are obtained both by a theory group analysis and by direct calculation by means of the same low-energy effective Lagrangian used in previous works. We also study the leptonic decay channels in the normal phase and in the pion condensed phase, finding that some of these channels have a peculiar nonmonotonic behavior as a function of the isospin chemical potential. Regarding the semileptonic decays, we find that that they should be efficient feeding processes for the stable charged pion state.

    hep-phnucl-thPRD(2015)·38 citations
  2. 05

    Muon g-2 estimates : Can one trust Effective Lagrangians and global fits ?

    M. Benayoun🇫🇷 · P. David🇫🇷 · L. DelBuono🇫🇷 · F. Jegerlehner🇩🇪

    Previous studies have shown that the Hidden Local Symmetry (HLS) Model, supplied with appropriate symmetry breaking mechanisms, provides an Effective Lagrangian (BHLS) which encompasses a large number of processes within a unified framework; a global fit procedure allows for a simultaneous description of the e+ e- annihilation into the 6 final states , , , , , and includes the dipion spectrum in the {\tau} decay and some more light meson decay partial widths. The contribution to the muon anomalous magnetic moment of these annihilation channels over the range of validity of the HLS model (up to 1.05 GeV) is found much improved compared to its partner derived from integrating the measured spectra directly. However, most spectra for the process undergo overall scale uncertainties which dominate the other sources, and one may suspect some bias in the dipion contribution to . However, an iterated fit algorithm, shown to lead to unbiased results by a Monte Carlo study, is defined and applied succesfully to the data samples from CMD2, SND, KLOE, BaBar and BESSIII. The iterated fit solution is shown to be further improved and leads to a value for different from above the 4 level. The contribution of the intermediate state up to 1.05 GeV to derived from the iterated fit benefits from an uncertainty about 3 times smaller than the corresponding usual estimate. Therefore, global fit techniques are shown to work and lead to improved unbiased results.

    hep-phhep-exnucl-thEPJC(2015)·67 citations

Affiliations

first authorsco-authorsvia INSPIRE