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Decuplet reexamined in chiral perturbation theory.

Manoj K. Banerjee, +1 more
- 01 Nov 1996 - 
- Vol. 54, Iss: 9, pp 5804-5811
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TLDR
It is found that the lowest order one-loop contributions from the Roper octet and the {Delta}(1600) to the decuplet masses and magnetic moments are substantial and relevant to the chiral expansion in general.
Abstract
This paper deals with two issues. First, we explore the quantitative importance of higher multiplets for properties of the $\ensuremath{\Delta}$ decuplet in chiral perturbation theory. In particular, it is found that the lowest order one-loop contributions from the Roper octet and the $\ensuremath{\Delta}(1600)$ to the decuplet masses and magnetic moments are substantial. The relevance of these results to the chiral expansion in general is discussed. The exact values of the magnetic moments depend upon delicate cancellations involving ill-determined coupling constants. Second, we present new relations between the magnetic moments of the $\ensuremath{\Delta}$ decuplet that are independent of all couplings. They are exact at the order of the chiral expansion used in this paper.

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Nuclear effective field theory: status and perspectives

TL;DR: The nuclear physics landscape has been redesigned as a sequence of effective field theories (EFTs) connected to the Standard Model through symmetries and lattice simulations of Quantum Chromodynamics (QCD) as mentioned in this paper.
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Hadron structure from lattice quantum chromodynamics

TL;DR: A review of lattice physics from lattice QCD can be found in this article, where a number of fundamental physics questions related to the origin and distribution of the charge, magnetization, momentum and spin of hadrons are discussed.
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Physical nucleon properties from lattice QCD.

TL;DR: A remarkably robust chiral extrapolation of the nucleon mass is demonstrated using a variety of finite-range regulators for the mass of the nucleus recently obtained by the CP-PACS group.
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On chiral extrapolations of charmed meson masses and coupled-channel reaction dynamics

TL;DR: In this article, an analysis of QCD lattice data on charmed-meson masses was performed, and the quark-mass dependence of the data set was used to gain information on the size of counterterms of the chiral Lagrangian formulated with open-charm states.
Journal ArticleDOI

Baryon self energies in the chiral loop expansion

A. Semke, +1 more
- 13 Nov 2006 - 
TL;DR: In this paper, the self energies of the baryon octet and decuplet states were computed at the one-loop level applying the manifestly covariant chiral Lagrangian.
References
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Book

Dynamics of the Standard Model

TL;DR: In this paper, the S = 1 interaction was introduced and the Kaon mixing and CP violation was investigated in the context of the large N expansion of the standard QCD model.

Dynamics of the Standard Model

TL;DR: In this article, the S = 1 interaction was introduced and the Kaon mixing and CP violation was investigated in the context of the large N expansion of the standard QCD model.
Journal ArticleDOI

Essential strangeness in nucleon magnetic moments

TL;DR: In this paper, effective quark magnetic moments are extracted from experimental measurements as a function of the strangeness magnetic moment of the nucleon, and the effect of these moments is investigated.
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