中文

$\bar K$-Nuclear Deeply Bound States?

核理论 2008-11-26 v1

摘要

Following the prediction by Akaishi and Yamazaki of relatively narrow Kˉ\bar K-nuclear states, deeply bound by over 100 MeV where the main decay channel KˉNπΣ\bar K N \to \pi \Sigma is closed, several experimental signals in stopped KK^- reactions on light nuclei have been interpreted recently as due to such states. In this talk I review (i) the evidence from KK^--atom data for a {\it deep} Kˉ\bar K-nucleus potential, as attractive as VKˉ(ρ0)(150200)V_{\bar K}(\rho_0) \sim -(150 - 200) MeV at nuclear matter density, that could support such states; and (ii) the theoretical arguments for a {\it shallow} potential, VKˉ(ρ0)(4060)V_{\bar K}(\rho_0) \sim -(40 - 60) MeV. I then review a recent work by Mare\v{s}, Friedman and Gal in which Kˉ\bar K-nuclear bound states are generated dynamically across the periodic table, using a RMF Lagrangian that couples the Kˉ\bar K to the scalar and vector meson fields mediating the nuclear interactions. Substantial polarization of the core nucleus is found for light nuclei, with central nuclear densities enhanced by almost a factor of two. The binding energies and widths calculated in this dynamical model differ appreciably from those calculated for a static nucleus. These calculations provide a lower limit of ΓKˉ50±10\Gamma_{\bar K} \sim 50 \pm 10 MeV on the width of nuclear bound states for Kˉ\bar K binding energy in the range BKˉ=100200B_{\bar K} = 100 - 200 MeV.

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引用

@article{arxiv.nucl-th/0604067,
  title  = {$\bar K$-Nuclear Deeply Bound States?},
  author = {Avraham Gal},
  journal= {arXiv preprint arXiv:nucl-th/0604067},
  year   = {2008}
}

备注

An updated expanded version of a talk first given in SNP'04, Osaka, July 2004. Presented at ISHIP 2006, Frankfurt, April 2006, to be published in Int. J. Mod. Phys. E