Kopsavilkums
The paper deals with the model research of electric transport characteristics of stressed and non-stressed FeSe monolayers. Transmission spectra, current-voltage characteristic (CVC) and differential conductivity spectra of two-dimensional FeSe nanostructure have been calculated within the framework of the density functional theory and non-equilibrium Green's functions (DFT + NEGF). It has been shown that the electrophysical properties depend on the geometry of the sample, the substrate, and the lattice constant. On CVC of non-stressed sample in the range from -1.2 V to -1 and from 1.2 V to 1.4 V, a region of negative differential resistance (NDR) has been observed. NDR is at both signs of the applied voltage due to the symmetry of the nanostructure. d2I/dV2 is used to determine the nature of the electron-phonon interaction and the features of quasiparticle tunnelling in stressed and non-stressed samples. The results obtained can be useful for calculating new elements of 2D nanoelectronics.
| Oriģinālvaloda | Angļu |
|---|---|
| Lapas (no-līdz) | 3-11 |
| Lapu skaits | 9 |
| Žurnāls | Latvian Journal of Physics and Technical Sciences |
| Sējums | 57 |
| Izdevuma numurs | 6 |
| DOIs | |
| Publikācijas statuss | Publicēts - 1 dec. 2020 |
OECD Zinātnes nozare
- 1.3 Fizika un astronomija
Nospiedums
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