arXiv · 0910.0956
Effect of dimensionality on the charge-density-wave in few-layers 2H-NbSe$_2$
Abstract
We investigate the charge density wave (CDW) instability in single and double layers, as well as in the bulk 2H-NbSe$_{2}$. We demonstrate that the density functional theory correctly describes the metallic CDW state in the bulk 2H-NbSe$_{2}$. We predict that both mono- and bilayer NbSe$_{2}$ undergo a CDW instability. However, while in the bulk the instability occurs at a momentum $\mathbf{q}_{CDW}\approx{2/3}\mathbf{ΓM}$, in free-standing layers it occurs at $\mathbf{q}_{CDW}\approx{1/2}\mathbf{ΓM}$. Furthermore, while in the bulk the CDW leads to a metallic state, in a monolayer the ground state becomes semimetallic, in agreement with recent experimental data. We elucidate the key role that an enhancement of the electron-phonon matrix element at $\mathbf{q}\approx\mathbf{q}_{CDW}$ plays in forming the CDW ground state.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Matteo Calandra, I. I. Mazin, Francesco Mauri. 2009-10-06. Effect of dimensionality on the charge-density-wave in few-layers 2H-NbSe$_2$. https://doi.org/10.1103/physrevb.80.241108
Cite the original work for its findings. Save a collection to share your selection of sources.