arXiv · 1304.3356
Chiral Symmetry Restoration and Scalar-Pseudoscalar partners in QCD
Abstract
We describe Scalar-Pseudoscalar partner degeneration at the QCD chiral transition in terms of the dominant low-energy physical states for the light quark sector. First, we obtain within model-independent one-loop Chiral Perturbation Theory (ChPT) that the QCD pseudoscalar susceptibility is proportional to the quark condensate at low $T$. Next, we show that this chiral-restoring behaviour for $χ_P$ is compatible with recent lattice results for screening masses and gives rise to degeneration between the scalar and pseudoscalar susceptibilities ($χ_S$, $χ_P$) around the transition point, consistently with an O(4)-like current restoration pattern. This scenario is clearly confirmed by lattice data when we compare $χ_S(T)$ with the quark condensate, expected to scale as $χ_P(T)$. Finally, we show that saturating $χ_S$ with the $σ/f_0(500)$ broad resonance observed in pion scattering and including its finite temperature dependence, allows to describe the peak structure of $χ_S(T)$ in lattice data and the associated critical temperature. This is carried out within a unitarized ChPT scheme which generates the resonant state dynamically and is also consistent with partner degeneration.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
A. Gomez Nicola, J. Ruiz de Elvira, R. Torres Andres. 2013-10-17. Chiral Symmetry Restoration and Scalar-Pseudoscalar partners in QCD. https://doi.org/10.1103/physrevd.88.076007
Cite the original work for its findings. Save a collection to share your selection of sources.