Spin polarizabilities provide information on the internal structure of hadrons in the presence of weak external electromagnetic fields, and are actively studied by Compton scattering experiments. They provide finer detail than the regular polarizabilities since they require space and time-varying fields. Using an effective action in the weak field limit, we have identified methods to isolate each of the physical quantities (µ,α,β,γE1,γM1,γE2,γM2) for spin-1/2 hadrons, both neutral and charged. We also perform a lattice QCD simulation to investigate the feasibility of the effective action approach. XXIX International Symposium on Lattice Field Theor
Measurements of the proton's spin structure in experiments scattering a polarized electron beam off ...
AbstractWe investigate the ground state energies of neutral pseudoscalar and vector meson in SU(3) l...
International audienceThe strong interaction is not well understood at low energy, or for interactio...
We extract the magnetic polarizability from the quadratic response of a hadron's mass shift in progr...
We present a calculation of hadron magnetic polarizability using the techniques of lattice QCD. This...
Chiral perturbation theory makes definitive predictions for the extrinsic behavior of hadrons in ext...
We discuss the extraction of the electromagnetic and spin polarisabilities of nucleons from lattice ...
By simulating a uniform electric field on a lattice and measuring the change in the rest mass, we ca...
As a guideline for forthcoming experiments, we present predictions from Chiral Effective Field Theor...
We present a phenomenological discussion of spin-independent, generalized dipole polarizabilities of...
We analyze polarized Compton scattering which provides information on the spin-structure of the nucl...
Polarized Compton scattering off the proton is studied within the framework of subtracted dispersion...
Electromagnetic properties of the nucleon are explored with lattice QCD using a novel technique. Foc...
The theoretical and experimental status of high energy spin phenomena is summarized, with emphasis o...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
Measurements of the proton's spin structure in experiments scattering a polarized electron beam off ...
AbstractWe investigate the ground state energies of neutral pseudoscalar and vector meson in SU(3) l...
International audienceThe strong interaction is not well understood at low energy, or for interactio...
We extract the magnetic polarizability from the quadratic response of a hadron's mass shift in progr...
We present a calculation of hadron magnetic polarizability using the techniques of lattice QCD. This...
Chiral perturbation theory makes definitive predictions for the extrinsic behavior of hadrons in ext...
We discuss the extraction of the electromagnetic and spin polarisabilities of nucleons from lattice ...
By simulating a uniform electric field on a lattice and measuring the change in the rest mass, we ca...
As a guideline for forthcoming experiments, we present predictions from Chiral Effective Field Theor...
We present a phenomenological discussion of spin-independent, generalized dipole polarizabilities of...
We analyze polarized Compton scattering which provides information on the spin-structure of the nucl...
Polarized Compton scattering off the proton is studied within the framework of subtracted dispersion...
Electromagnetic properties of the nucleon are explored with lattice QCD using a novel technique. Foc...
The theoretical and experimental status of high energy spin phenomena is summarized, with emphasis o...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
Measurements of the proton's spin structure in experiments scattering a polarized electron beam off ...
AbstractWe investigate the ground state energies of neutral pseudoscalar and vector meson in SU(3) l...
International audienceThe strong interaction is not well understood at low energy, or for interactio...