We review our main results concerning the transport coefficients of a light meson gas, in particular we focus on the case of a massive pion gas Leading order results according to the chiral power-counting are presented for the DC electrical conductivity, thermal conductivity, shear viscosity, and bulk viscosity We also comment on the possible correlation between the bulk viscosity and the trace anomaly in QCD, as well as the relation between unitarity and a minimum of the quotient eta/s near the phase transitio
In the hadronic phase, the dominant configuration of quantum chromodynamics (QCD) with two flavors o...
In this work we provided additional insights into our understanding of bulk QCD matter through the s...
The shear viscosity of an interacting pion gas is studied using the Kubo formalism as a microscopic ...
Abstract We review or main results concerning the transport coefficients of a light meson gas, in pa...
We present recent results on a systematic method to calculate transport coefficients for a meson gas...
We present recent results on the calculation of transport coefficients for a pion gas at zero chemic...
We present recent results on the calculation of transport coefficients for a pion gas at zero chemic...
We present recent results on a systematic method to calculate transport coefficients for a meson gas...
The electrical conductivity of a pion gas at low temperatures is studied in the framework of linear ...
We present recent results on finite temperature electromagnetic form factors and the electrical cond...
This dissertation focuses on the calculation of transport coefficients in the matter created in a re...
In this thesis, we study kinetic theory and chiral perturbation theory, which are employed to comput...
Using chiral perturbation theory we investigate the QCD shear viscosity ($\eta $) to entropy density...
A breakthrough at the Relativistic Heavy-Ion Collider (RHIC), confirmed by higher energy analyses at...
We evaluate the heat conductivity of a dilute pion gas employing the Uehling-Uehlenbeck equation and...
In the hadronic phase, the dominant configuration of quantum chromodynamics (QCD) with two flavors o...
In this work we provided additional insights into our understanding of bulk QCD matter through the s...
The shear viscosity of an interacting pion gas is studied using the Kubo formalism as a microscopic ...
Abstract We review or main results concerning the transport coefficients of a light meson gas, in pa...
We present recent results on a systematic method to calculate transport coefficients for a meson gas...
We present recent results on the calculation of transport coefficients for a pion gas at zero chemic...
We present recent results on the calculation of transport coefficients for a pion gas at zero chemic...
We present recent results on a systematic method to calculate transport coefficients for a meson gas...
The electrical conductivity of a pion gas at low temperatures is studied in the framework of linear ...
We present recent results on finite temperature electromagnetic form factors and the electrical cond...
This dissertation focuses on the calculation of transport coefficients in the matter created in a re...
In this thesis, we study kinetic theory and chiral perturbation theory, which are employed to comput...
Using chiral perturbation theory we investigate the QCD shear viscosity ($\eta $) to entropy density...
A breakthrough at the Relativistic Heavy-Ion Collider (RHIC), confirmed by higher energy analyses at...
We evaluate the heat conductivity of a dilute pion gas employing the Uehling-Uehlenbeck equation and...
In the hadronic phase, the dominant configuration of quantum chromodynamics (QCD) with two flavors o...
In this work we provided additional insights into our understanding of bulk QCD matter through the s...
The shear viscosity of an interacting pion gas is studied using the Kubo formalism as a microscopic ...