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Titlebook: Hadronic Transport Coefficients from Effective Field Theories; Juan M. Torres-Rincon Book 2014 Springer International Publishing Switzerla

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https://doi.org/10.1007/978-1-4684-8097-9he relaxation time accounts for the characteristic time of change of the distribution function. A way to extract the relaxation times once the transport coefficients are known, is to use the Bhatnagar-Gross-Krook or relaxation time approximation.
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Hadronic Transport Coefficients from Effective Field Theories
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Book 2014vy-ion collision and its subsequent evolution. We show that the shear viscosity over entropy density exhibits a minimum in a phase transition by studying this coefficient in atomic Argon (around the liquid-gas phase transition) and in the linear sigma model in the limit of a large number of scalar f
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2190-5053 py density exhibits a minimum in a phase transition by studying this coefficient in atomic Argon (around the liquid-gas phase transition) and in the linear sigma model in the limit of a large number of scalar f978-3-319-37591-5978-3-319-00425-9Series ISSN 2190-5053 Series E-ISSN 2190-5061
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Introduction to Relativistic Heavy Ion Collisions,ize a relativistic heavy-ion collision. We will discuss a typical heavy-ion collision taking place at the Relativistic Heavy Ion Collider (RHIC) or at the Large Hadron Collider (LHC). We start by describing the collision variables and the observables relevant to extract the transport coefficients.
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Book 2014ze-out. This matter can be well approximated using a pion gas out of equilibrium. We describe the theoretical framework needed to obtain the shear and bulk viscosities, the thermal and electrical conductivities and the flavor diffusion coefficients of a meson gas at low temperatures. To describe the
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Boltzmann-Uehling-Uhlenbeck Equation, to solve it. For the sake of simplicity, in this chapter we will set the formalism for a one-species gas, ignoring the conserved internal (or flavor-like) charges. Later, in Chaps. . and . we will attend to these.
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