Baryon Chiral Perturbation Theory in Partially Quenched Large-Nc QCD

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Baryons of lower spin in partially quenched large-$N_c$ QCD are studied with particular emphasis to interpolation between standard unquenched and fully quenched limits. In large $N_c$ limit of partially quenched QCD, we calculate $Δm$, the chiral one-loop correction to baryon masses. We find that leading order contribution to $Δm$ is independent of number of ghost quarks introduced. For finite $N_c$, chiral correction $Δm$ does satisfy the Bernard--Golterman's third theorem and has no infared quenching singularity except for fully quenched limit. At large $N_c$ limit, however, we show that the third theorem is bypassed and nontrivial quenched chiral corrections do arise. In unquenched limit, we also show that standard chiral perturbation theory results are reproduced in which $η'$ loop contributions are explicitly taken into account.
Latex, 19 pages, 2 figures, v2: two typos corrected, v3: two subsections and minor corrections are added

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