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In-medium chiral SU(3) dynamics and hypernuclear structure

Finelli, P. and Kaiser, N. and Vretenar, D. and Weise, W.

Keywords

No keywords

Abstract

A previously introduced relativistic energy density functional, successfully applied to ordinary nuclei, is extended to hypernuclei. The density-dependent mean field and the spin-orbit potential are consistently calculated for a $Lambda$ hyperon in the nucleus using the SU(3) extension of in-medium chiral perturbation theory. The leading long range $Lambda N$ interaction arises from kaon-exchange and $2pi$-exchange with $Sigma$ hyperon in the intermediate state. Scalar and vector mean fields reflecting in-medium changes of the quark condensates are constrained by QCD sum rules. The model, applied to oxygen as a test case, describes spectroscopic data in good agreement with experiment. In particular, the smallness of the $Lambda$ spin-orbit interaction finds a natural explanation in terms of an almost complete cancellation between scalar-vector background contributions and long-range terms generated by two-pion exchange.

Information

Published
2007 as article (english)
Phys. Lett., B658 - page(s): 90-94
Contact
Prof. Dr. Wolfram Weise
Type
theoretical work
Links
pdf
spires
www-library.desy.de/…
Related to the research area(s):
C, G
e-Print
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