Pressure-Induced Zero-Gap Semiconducting State in Organic Conductor -(BEDT-TTF)I Salt
arXiv:cond-mat/0601068 · doi:10.1143/JPSJ.75.054705
Abstract
We show a zero-gap semiconducting (ZGS) state in the quasi-two-dimensional organic conductor -(BEDT-TTF)I salt, which emerges under uniaxial pressure along the a-axis (the stacking axis of the BEDT-TTF molecule). The ZGS state is the state in which a Dirac cone with the band spectrum of a linear dispersion exists around the Fermi point connecting an unoccupied (electron) band with an occupied (hole) band. The spectrum exhibits a large anisotropy in velocity, which depends on the direction from the Fermi point. By varying the magnitude of several transfer energies of a tight-binding model with four sites per unit cell, it is shown that the ZGS state exists in a wide pressure range, and is attributable to the large anisotropy of the transfer energies along the stacking axis.
6 pages, 8 figures, to be published in J. Phys. Soc. Jpn