Extracting nucleon magnetic moments and electric polarizabilities from lattice QCD in background electric fields
Journal Article
·
· Physical Review. D, Particles Fields
- Department of Physics, College of William and Mary, Williamsburg, Virginia 23187-8795 (United States)
- Maryland Center for Fundamental Physics, Department of Physics, University of Maryland, College Park, Maryland 20742-4111 (United States)
Nucleon properties are investigated in background electric fields. As the magnetic moments of baryons affect their relativistic propagation in constant electric fields, electric polarizabilities cannot be determined without knowledge of magnetic moments. This is analogous to the experimental situation, for which determination of polarizabilities from the Compton amplitude requires subtraction of Born terms. With the background field method, we devise combinations of nucleon correlation functions in constant electric fields that isolate magnetic moments and electric polarizabilities. Using an ensemble of anisotropic gauge configurations with dynamical clover fermions, we demonstrate how both observables can be determined from lattice QCD simulations in background electric fields. We obtain results for the neutron and proton, however, our study is currently limited to electrically neutral sea quarks. The value we extract for the nucleon isovector magnetic moment is comparable to those obtained from measuring lattice three-point functions at similar pion masses.
- OSTI ID:
- 21409870
- Journal Information:
- Physical Review. D, Particles Fields, Journal Name: Physical Review. D, Particles Fields Journal Issue: 5 Vol. 81; ISSN PRVDAQ; ISSN 0556-2821
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
72 PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
AMPLITUDES
ANISOTROPY
BARYONS
BOSONS
CORRELATION FUNCTIONS
ELECTRIC FIELDS
ELECTRICAL PROPERTIES
ELEMENTARY PARTICLES
ENERGY RANGE
FERMIONS
FIELD THEORIES
FUNCTIONS
HADRONS
MAGNETIC MOMENTS
MASS
MESONS
NEUTRONS
NUCLEONS
PHYSICAL PROPERTIES
PIONS
POLARIZABILITY
PROTONS
PSEUDOSCALAR MESONS
QUANTUM CHROMODYNAMICS
QUANTUM FIELD THEORY
QUARKS
RELATIVISTIC RANGE
SIMULATION
AMPLITUDES
ANISOTROPY
BARYONS
BOSONS
CORRELATION FUNCTIONS
ELECTRIC FIELDS
ELECTRICAL PROPERTIES
ELEMENTARY PARTICLES
ENERGY RANGE
FERMIONS
FIELD THEORIES
FUNCTIONS
HADRONS
MAGNETIC MOMENTS
MASS
MESONS
NEUTRONS
NUCLEONS
PHYSICAL PROPERTIES
PIONS
POLARIZABILITY
PROTONS
PSEUDOSCALAR MESONS
QUANTUM CHROMODYNAMICS
QUANTUM FIELD THEORY
QUARKS
RELATIVISTIC RANGE
SIMULATION