We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theory. In particular we investigate the low energy component of the loop integrals involving kaons. We separate the chiral calculation into a low energy part and a high energy component through use of a momentum space separation scale. This separation shows that most of the chiral calculation comes from high energies where the effective field theory treatment is not valid. The resulting low energy prediction is in better agreement with dispersive treatments. Finally, we briefly discuss magnetic moments and show how our techniques can help resolve an old puzzle in understanding the magnetic moments of the proton and Σ+
We examine the nucleon strangeness magnetic moment mu(s) with a lowest order meson cloud model. We o...
Intrinsic strangeness contributions to low-energy strange quark matrix elements of the nucleon are m...
We examine the nucleon strangeness magnetic moment mu(s) with a lowest order meson cloud model. We o...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
In this work we extend previous kaon loop calculations, including the vector K* meson and estimate t...
Published 18 February 2014The strange magnetic form factor of the nucleon is studied in a chiral eff...
We analyze the q(2)-dependence of the strange magnetic form factor, G(M)((s)) (q(2)), using heavy ba...
The strangeness magnetic moment of the proton is shown to be small in the chiral quark model. The do...
International audienceBackground: Unravelling the role played by nonvalence flavors in baryons is cr...
We examine the nucleon strangeness magnetic moment mu(s) with a lowest order meson cloud model. We o...
We examine the nucleon strangeness magnetic moment mu(s) with a lowest order meson cloud model. We o...
Intrinsic strangeness contributions to low-energy strange quark matrix elements of the nucleon are m...
We examine the nucleon strangeness magnetic moment mu(s) with a lowest order meson cloud model. We o...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
We discuss the calculation of the strange magnetic radius of the proton in chiral perturbation theor...
In this work we extend previous kaon loop calculations, including the vector K* meson and estimate t...
Published 18 February 2014The strange magnetic form factor of the nucleon is studied in a chiral eff...
We analyze the q(2)-dependence of the strange magnetic form factor, G(M)((s)) (q(2)), using heavy ba...
The strangeness magnetic moment of the proton is shown to be small in the chiral quark model. The do...
International audienceBackground: Unravelling the role played by nonvalence flavors in baryons is cr...
We examine the nucleon strangeness magnetic moment mu(s) with a lowest order meson cloud model. We o...
We examine the nucleon strangeness magnetic moment mu(s) with a lowest order meson cloud model. We o...
Intrinsic strangeness contributions to low-energy strange quark matrix elements of the nucleon are m...
We examine the nucleon strangeness magnetic moment mu(s) with a lowest order meson cloud model. We o...