We derive relativistic second-order dissipative fluid-dynamical equations of motion for massive spin-1/2 particles from kinetic theory using the method of moments. Besides the usual conservation laws for charge, energy, and momentum, such a theory of relativistic dissipative spin hydrodynamics features an equation of motion for the rank-3 spin tensor, which follows from the conservation of total angular momentum. Extending the conventional method of moments for spin-0 particles, we expand the spin-dependent distribution function near local equilibrium in terms of moments of the momentum and spin variables. We work to next-to-leading order in the Planck constant $\hbar$. As shown in previous work, at this order in $\hbar$ the Boltzmann equat...
We discuss the possibility of a non-vanishing spin tensor in relativistic hydrodynamics and its rele...
AbstractA consistent derivation of the equations of motion (EOMs) of test particles for solving the ...
Detailed deterministic derivation of the kinetic equations for the relativistic plasmas is given. Fo...
The aim of this thesis is to provide a complete and consistent derivation of second-order dissipativ...
We derive relativistic dissipative spin hydrodynamics from kinetic theory featuring a nonlocal colli...
We derive the equations of motion of relativistic, nonresistive, second-order dissipative magnetohy-...
We derive equations of motion for dissipative spin hydrodynamics from kinetic theory up to first ord...
Starting from kinetic theory description of massive spin-1/2 particles in presence of magnetic field...
AbstractStarting with the relativistic Boltzmann equation where the collision term is generalized to...
We derive multicomponent relativistic second-order dissipative fluid dynamics from the Boltzmann equ...
We derive multicomponent relativistic second-order dissipative fluid dynamics from the Boltzmann equ...
In this work, we briefly review the progress made in the formulation of hydrodynamics with spin with...
We derive the equations of second order dissipative fluid dynamics from the relativistic Boltzmann e...
We derive relativistic hydrodynamic equations with a dynamical spin degree of freedom on the basis o...
We have derived the analytic solutions of dissipative relativistic spin hydrodynamics with Gubser ex...
We discuss the possibility of a non-vanishing spin tensor in relativistic hydrodynamics and its rele...
AbstractA consistent derivation of the equations of motion (EOMs) of test particles for solving the ...
Detailed deterministic derivation of the kinetic equations for the relativistic plasmas is given. Fo...
The aim of this thesis is to provide a complete and consistent derivation of second-order dissipativ...
We derive relativistic dissipative spin hydrodynamics from kinetic theory featuring a nonlocal colli...
We derive the equations of motion of relativistic, nonresistive, second-order dissipative magnetohy-...
We derive equations of motion for dissipative spin hydrodynamics from kinetic theory up to first ord...
Starting from kinetic theory description of massive spin-1/2 particles in presence of magnetic field...
AbstractStarting with the relativistic Boltzmann equation where the collision term is generalized to...
We derive multicomponent relativistic second-order dissipative fluid dynamics from the Boltzmann equ...
We derive multicomponent relativistic second-order dissipative fluid dynamics from the Boltzmann equ...
In this work, we briefly review the progress made in the formulation of hydrodynamics with spin with...
We derive the equations of second order dissipative fluid dynamics from the relativistic Boltzmann e...
We derive relativistic hydrodynamic equations with a dynamical spin degree of freedom on the basis o...
We have derived the analytic solutions of dissipative relativistic spin hydrodynamics with Gubser ex...
We discuss the possibility of a non-vanishing spin tensor in relativistic hydrodynamics and its rele...
AbstractA consistent derivation of the equations of motion (EOMs) of test particles for solving the ...
Detailed deterministic derivation of the kinetic equations for the relativistic plasmas is given. Fo...