The imaginary part of the exchange-correlation kernel in the longitudinal current-current response function of a quasi-one-dimensional Fermi liquid is evaluated by an approximate decoupling in the equation of motion for the current density, which accounts for processes of excitation of two particle-hole pairs. The two-pair spectrum determines the intrinsic damping rate of long-wavelength collective density fluctuations, which is calculated and contrasted with a result previously obtained for a clean Luttinger liquid.

Damping of long-wavelength collective excitations in quasi-onedimensional Fermi liquids

M Polini;
2003

Abstract

The imaginary part of the exchange-correlation kernel in the longitudinal current-current response function of a quasi-one-dimensional Fermi liquid is evaluated by an approximate decoupling in the equation of motion for the current density, which accounts for processes of excitation of two particle-hole pairs. The two-pair spectrum determines the intrinsic damping rate of long-wavelength collective density fluctuations, which is calculated and contrasted with a result previously obtained for a clean Luttinger liquid.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/209209
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