Non-Fermi Liquid in a Truncated Two-Dimensional Fermi Surface
نویسنده
چکیده
Using perturbation theory and the field theoretical renormalization group approach we consider a two-dimensional anisotropic truncated Fermi Surface(FS) with both flat and curved sectors which approximately simulates the “cold” and “hot” spots in the cuprate superconductors. We calculate the one-particle two-loop irreducible functions Γ and Γ as well as the spin, the charge and pairing response functions up to one-loop order. We find non-trivial infrared stable fixed points and we show that there are important effects produced by the mixing of the existing scattering channels in higher order of perturbation theory. Our results indicate that the “cold “ spots are turned into a non-Fermi liquid with divergents ∂Σ0/∂p0 and ∂Σ0/∂p, a vanishing Z and a finite Fermi velocity at FS when the effects produced by the flat portions are taken into account.
منابع مشابه
Phenomenological theory of two-dimensional quantum liquids
A phenomenological theory is presented for two-dimensional quantum liquids in terms of the Fermi surface geometry. It is shown that there is a one-to-one correspondence between the properties of an interacting electron system and its corresponding Fermi surface. By doing this, the concept of Fermi surface is generalized to include different topologies. It is shown that for a Fermi liquid the co...
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