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Using the transport kinetic equation for spin density in thin film as 2D Fermi liquid, the dynamic spin susceptibility is calculated in terms of the Landau parameters a for thin film. The formula allows to estimate the dispersion relation of susc eptibility with arbitrary up to quadric term in wave vector 2 k . The possibility of experimental determine of Landau's parameters with higher is discussed and compared with others in this field.
Landau,s – Silin Semi Kinetic Equation has been solved by this scientific paper. After taking into consideration the mutual effect between quasi particles in Fermi's Plasma under a magnetic field to get more accurate results related to coming up wi th some characteristics of this sphere. Like the conductivity and dielectric coefficient due to their necessity in the plasma's characteristic study depending on Landau's parameters and comparing them to the results of other ways for these parameters to be calculated.
In this study, an Interaction Function between quasi particles has been introduced into an energy formula in Kinetic Equation of Quantum Plasmas. Such new type can be used to study quasi Particles of Quantum Fermi Plasmas, since it contains quantum term that is correlated with Bohm Potential, when the mean inter-particle distance is of the same order as the de-Broglie thermal wavelength. An interaction function between quasi particles has been expressed using spherical Functions in three-dimensional space with Landau’s spread coefficients for ℓ = 0 , 1 , 2 . Using such representation led to obtaining the dispersion relation of the structural waves and its energy Spectrum in balanced local condition. The use of Landau parameters in this study isconsidered new comparing to other studies in this field. It allows us to get more generic and more precise dispersion relations with new previously unknown spectrum energy in Quantum Fermi Plasmas.
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