Chiral perturbation theory makes definitive predictions for the extrinsic behavior of hadrons in external electric and magnetic fields. Near the chiral limit, the electric and magnetic polarizabilities of pions, kaons, and nucleons are determined in terms of a few well-known parameters. In this limit, hadrons become quantum mechanically diffuse as polarizabilities scale with the inverse square-root of the quark mass. In some cases, however, such predictions from chiral perturbation theory have not compared well with experimental data. Ultimately we must turn to first principles numerical simulations of QCD to determine properties of hadrons, and confront the predictions of chiral perturbation theory. To address the electromagnetic polarizab...
We explore the energy dependence of neutral and charge pions of the background constant abelian magn...
We explore the energy dependence of neutral and charge pions of the background constant abelian magn...
Electromagnetic dipole polarizabilities are fundamental properties of a hadron that represent its re...
We discuss the extraction of the electromagnetic and spin polarisabilities of nucleons from lattice ...
The background magnetic-field formalism of lattice QCD has been used recently to calculate the magne...
We present a calculation of hadron magnetic polarizability using the techniques of lattice QCD. This...
Electromagnetic properties of the nucleon are explored with lattice QCD using a novel technique. Foc...
Electromagnetic properties of the nucleon are explored with lattice QCD using a novel technique. Foc...
By simulating a uniform electric field on a lattice and measuring the change in the rest mass, we ca...
AbstractThe Chiral Perturbation Theory (CHPT) has been very successful in describing low-energy hadr...
Knowledge of the electric polarizability is crucial to understanding the interactions of hadrons wit...
Knowledge of the electric polarizability is crucial to understanding the interactions of hadrons wit...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
We present a calculation of the magnetic moment and magnetic polarisability of the nucleon. The calc...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
We explore the energy dependence of neutral and charge pions of the background constant abelian magn...
We explore the energy dependence of neutral and charge pions of the background constant abelian magn...
Electromagnetic dipole polarizabilities are fundamental properties of a hadron that represent its re...
We discuss the extraction of the electromagnetic and spin polarisabilities of nucleons from lattice ...
The background magnetic-field formalism of lattice QCD has been used recently to calculate the magne...
We present a calculation of hadron magnetic polarizability using the techniques of lattice QCD. This...
Electromagnetic properties of the nucleon are explored with lattice QCD using a novel technique. Foc...
Electromagnetic properties of the nucleon are explored with lattice QCD using a novel technique. Foc...
By simulating a uniform electric field on a lattice and measuring the change in the rest mass, we ca...
AbstractThe Chiral Perturbation Theory (CHPT) has been very successful in describing low-energy hadr...
Knowledge of the electric polarizability is crucial to understanding the interactions of hadrons wit...
Knowledge of the electric polarizability is crucial to understanding the interactions of hadrons wit...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
We present a calculation of the magnetic moment and magnetic polarisability of the nucleon. The calc...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
We explore the energy dependence of neutral and charge pions of the background constant abelian magn...
We explore the energy dependence of neutral and charge pions of the background constant abelian magn...
Electromagnetic dipole polarizabilities are fundamental properties of a hadron that represent its re...