Magnetic moments of light, charmed, and b-italic-flavored baryons in a relativistic logarithmic potential
Journal Article
·
· Phys. Rev. D; (United States)
A simple independent-quark model based on the Dirac equation with logarithmic confining potential of the form V-italic(r-italic) = (1+..gamma../sup 0/)(a ln(r-italic/b-italic)) with a-italic,b-italic>0 is used to calculate the magnetic moments of light, charmed, and b-italic-flavored baryons. Not only do the results obtained for light baryons agree reasonably well with experiment, but also the overall predictions for the charmed and b-italic-flavored baryons compare very well with other model predictions.
- Research Organization:
- Department of Physics, Aska Science College, Aska 761110, Orissa, India
- OSTI ID:
- 5570451
- Journal Information:
- Phys. Rev. D; (United States), Journal Name: Phys. Rev. D; (United States) Vol. 34:1; ISSN PRVDA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
645202* -- High Energy Physics-- Particle Interactions & Properties-Theoretical-- Electromagnetic Interactions & Properties
72 PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
BAG MODEL
BARYON RESONANCES
BARYONS
BOUND STATE
CHARM PARTICLES
CHARMED BARYON RESONANCES
COMPOSITE MODELS
DIFFERENTIAL EQUATIONS
DIRAC EQUATION
ELEMENTARY PARTICLES
EQUATIONS
EXTENDED PARTICLE MODEL
FERMIONS
FIELD THEORIES
FLAVOR MODEL
GENERAL RELATIVITY THEORY
HADRONS
MAGNETIC MOMENTS
MATHEMATICAL MODELS
PARTIAL DIFFERENTIAL EQUATIONS
PARTICLE MODELS
POTENTIALS
QUARK MODEL
RELATIVITY THEORY
RESONANCE PARTICLES
WAVE EQUATIONS
72 PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
BAG MODEL
BARYON RESONANCES
BARYONS
BOUND STATE
CHARM PARTICLES
CHARMED BARYON RESONANCES
COMPOSITE MODELS
DIFFERENTIAL EQUATIONS
DIRAC EQUATION
ELEMENTARY PARTICLES
EQUATIONS
EXTENDED PARTICLE MODEL
FERMIONS
FIELD THEORIES
FLAVOR MODEL
GENERAL RELATIVITY THEORY
HADRONS
MAGNETIC MOMENTS
MATHEMATICAL MODELS
PARTIAL DIFFERENTIAL EQUATIONS
PARTICLE MODELS
POTENTIALS
QUARK MODEL
RELATIVITY THEORY
RESONANCE PARTICLES
WAVE EQUATIONS