Dielectric function, screening, and plasmons in 2D graphene
E. H. Hwang, S. Das Sarma
Abstract
The dynamical dielectric function of two dimensional graphene at arbitrary wave vector q and frequency ω, ε(q,ω), is calculated in the self-consistent field approximation. The results are used to find the dispersion of the plasmon mode and the electrostatic screening of the Coulomb interaction in 2D graphene layer within the random phase approximation. At long wavelengths (q 0) the plasmon dispersion shows the local classical behavior ωcl = ω0 q, but the density dependence of the plasma frequency (ω0 n1/4) is different from the usual 2D electron system (ω0 n1/2). The wave vector dependent plasmon dispersion and the static screening function show very different behavior than the usual 2D case.
Create a lesson
Related papers
Metallogenic quantum criticality: Fermi surface nucleation at transitions between gapped phases
Zhengyan Darius Shi
Exact Stiffness and Dynamical Responses from Fock-Space Fragmentation
Jonah Herzog-Arbeitman, Eslam Khalaf, Zhaoyu Han
A continuous confinement-deconfinement transition in a triangular quantum magnet
Suguru Hosoi, Sejun Park, Michihiro Hirata et al.
Multi-orbital physics in inverse Lieb lattice altermagnets
Mercè Roig, Jannik Gondolf, Andreas Kreisel et al.
3D- (H-theta-phi) magnetic phase diagram of antiferromagnetic metal GdB6 with electron and lattice instability
A. N. Azarevich, A. V. Bogach, T. F. Garipova et al.
Interlayer-engineering of Charge Order Wave Vector in Kagome Metals
Muntafa M. Mahi, Quazi D. M. Khosru, M. Zahid Hasan et al.