Photoabsorption spectra and the X-ray edge problem in graphene
arXiv:1104.5350 · doi:10.1209/0295-5075/94/67002
Abstract
We study the photoabsorption cross section and Fermi-edge singularities (FES) in graphene. For fillings below one half, we find, besides the expected FES in form of a peaked edge at the threshold (Fermi) energy, a second singularity to arise at excitation energies that correspond to the Dirac point in the density of states. We can explain this behaviour by comparing our results with the photoabsorption cross section of a metal with a small central band gap where we find a very similar signature. The existence of the second singularity might prove useful for an experimental determination of the Dirac point. We also demonstrate that the photoabsorption signal is enhanced by the zigzag edge states due to their metallic-like character. Since the presence of the edge states indicates a topological defect at the boundary, our study gives an example for a Fermi-edge singularity in a system with a topologically nontrivial electronic spectrum.
accepted for publication in Europhysics Letters (2011)
References in corpus (16)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Electronic States of Graphene Nanoribbons
- Orthogonality catastrophe and Kondo effect in graphene
- Boundary problems for Dirac electrons and edge-assisted Raman scattering in graphene
- Microscopic theory of the proximity effect in superconductor-graphene nanostructures
- Dirac Green's function approach to graphene-superconductor junctions with well defined edges
- Dirac fermion quantization on graphene edges: Isospin-orbit coupling, zero modes and spontaneous valley polarization
- Fine structure of the local pseudogap and Fano effect for superconducting electrons near a zigzag graphene edge
- Fermi-Edge Singularities in the Mesoscopic X-Ray Edge Problem
- X-ray edge problem of graphene
- Boundary-induced violation of the Dirac fermion parity and its signatures in local and global tunneling spectra of graphene
- Fermi Edge Singularities in the Mesoscopic Regime: II. Photo-absorption Spectra
- Many-body effects in the mesoscopic x-ray edge problem