The derivation of explicit expressions for the effective dielectric tensor to be utilized in the dispersion relation for weakly inhomogeneous plasmas is discussed. The general expressions obtained are useful for situations with simultaneous existence of weak inhomogeneities in density and magnetic field. The particular case of a Maxwellian distribution in velocity space for the electron population is discussed, and relatively compact expressions for the dielectric tensor are obtained, which depend on the inhomogeneous plasma dispersion function introduced by [Gaelzer et al., Phys. Rev. E 55, 5859 (1997)] and ultimately on the well-known Fried–Conte function and its derivatives
The dispersion relation for electromagnetic waves in a magnetized plasma with weakly inhomogeneous m...
International audienceIn the framework of hot magnetized collisionless plasmas, dispersion relations...
We derive the dielectric tensor for multicomponent magnetized dusty plasmas, including the effect of...
The derivation of explicit expressions for the effective dielectric tensor to be utilized in the dis...
We investigate the dispersion relation for a magnetized plasma with weak magnetic field gradients pe...
We investigate the dispersion relation for a magnetized plasma with weak magnetic field gradients pe...
We compare and discuss several approximations to the dispersion relation for electrostatic waves in ...
The procedures used to obtain general expressions for the components of the effective dielectric ten...
We compare and discuss several approximations to the dispersion relation for electrostatic waves in ...
The procedures used to obtain general expressions for the components of the effective dielectric ten...
We compare and discuss several approximations to the dispersion relation for electrostatic waves in ...
The procedures used to obtain general expressions for the components of the effective dielectric ten...
We present a detailed derivation of the effective dielectric constant to be used in the dispersion r...
The dispersion relation for electromagnetic waves in a magnetized plasma with weakly inhomogeneous m...
The dispersion relation for electromagnetic waves in a magnetized plasma with weakly inhomogeneous m...
The dispersion relation for electromagnetic waves in a magnetized plasma with weakly inhomogeneous m...
International audienceIn the framework of hot magnetized collisionless plasmas, dispersion relations...
We derive the dielectric tensor for multicomponent magnetized dusty plasmas, including the effect of...
The derivation of explicit expressions for the effective dielectric tensor to be utilized in the dis...
We investigate the dispersion relation for a magnetized plasma with weak magnetic field gradients pe...
We investigate the dispersion relation for a magnetized plasma with weak magnetic field gradients pe...
We compare and discuss several approximations to the dispersion relation for electrostatic waves in ...
The procedures used to obtain general expressions for the components of the effective dielectric ten...
We compare and discuss several approximations to the dispersion relation for electrostatic waves in ...
The procedures used to obtain general expressions for the components of the effective dielectric ten...
We compare and discuss several approximations to the dispersion relation for electrostatic waves in ...
The procedures used to obtain general expressions for the components of the effective dielectric ten...
We present a detailed derivation of the effective dielectric constant to be used in the dispersion r...
The dispersion relation for electromagnetic waves in a magnetized plasma with weakly inhomogeneous m...
The dispersion relation for electromagnetic waves in a magnetized plasma with weakly inhomogeneous m...
The dispersion relation for electromagnetic waves in a magnetized plasma with weakly inhomogeneous m...
International audienceIn the framework of hot magnetized collisionless plasmas, dispersion relations...
We derive the dielectric tensor for multicomponent magnetized dusty plasmas, including the effect of...