Diese Webseite wird nicht länger aktualisiert. Für Inhalte und Links wird keine Haftung übernommen. Bitte besuchen Sie die Seite des Nachfolgeclusters ORIGINS.
This website is no longer maintained. We assume no liability for content and links. Please visit the webpage of the successive cluster ORIGINS.

Finite-volume effects on octet-baryon masses in covariant baryon chiral perturbation theory

Geng, Li-sheng and Ren, Xiu-lei and Martin-Camalich, J. and Weise, W.

Keywords

No keywords

Abstract

We study finite-volume effects on the masses of the ground-state octet baryons using covariant baryon chiral perturbation theory (ChPT) up to next-to-leading order by analyzing the latest $n_f=2_s161$ lattice Quantum ChromoDynamics (LQCD) results from the NPLQCD collaboration. Contributions of virtual decuplet baryons are taken into account using the _s15consistent_s15 coupling scheme. We compare our results with those obtained from heavy baryon ChPT and show that, although both approaches can describe well the lattice data, the underlying physics is different: In HBChPT, virtual decuplet baryons play a more important role than they do in covariant ChPT. This is because the virtual octet baryon contributions to finite-volume corrections are larger in covariant ChPT than in HBChPT, while the contributions of intermediate decuplet baryons are smaller, because of relativistic effects. We observe that for the octet baryon masses, at fixed $m_pi L$ ($gg1$) finite-volume corrections decrease as $m_pi$ approaches its physical value, provided that the strange quark mass is at or close to its physical value, as in most LQCD setups.

Information

Published
2011 as article (english)
Phys. Rev. D, 84 - page(s): 074024
Contact
Prof. Dr. Wolfram Weise
Type
theoretical work
Links
pdf
spires
www-library.desy.de/…
Related to the research area(s):
C
e-Print
1108.2231

Technische Universitaet Muenchen
Exzellenzcluster Universe

Boltzmannstr. 2
D-85748 Garching

Tel. + 49 89 35831 - 7100
Fax + 49 89 3299 - 4002
info@universe-cluster.de