Dissipation-free transport and field emission of electrons in 2D carbon heterostructures with a quantum barrier.
- Authors: Yafarov R.K.1, Shabunin N.O.1
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Affiliations:
- Kotelnikov Institute of Radioengineering and Electronics Russian Academy of Sciences, Saratov Branch
- Issue: Vol 68, No 10 (2023)
- Pages: 1015-1018
- Section: ЭЛЕКТРОННАЯ И ИОННАЯ ЭМИССИЯ
- URL: https://kazanmedjournal.ru/0033-8494/article/view/650463
- DOI: https://doi.org/10.31857/S0033849423100200
- EDN: https://elibrary.ru/DMPKGT
- ID: 650463
Cite item
Abstract
The influence of the thickness of a tunnel-thin charge carrier-depleted carbon
layer in an enriched non-crystalline carbon matrix for dissipative transport and
field emission of electrons. It has been established that the “geometric” increase in self-energy electrons increases the transparency of potential barriers to dissipative transport in the heterostructure and at the solid-vacuum interface. It has been shown that the introduction of a quantum barrier into the carbon matrix increases the transverse current and rectifying properties of heterostructures, increases the field current density and the steepness of the current-voltage characteristics.
About the authors
R. K. Yafarov
Kotelnikov Institute of Radioengineering and Electronics Russian Academy of Sciences, Saratov Branch
Email: pirpc@yandex.ru
Saratov, 410019, Russia
N. O. Shabunin
Kotelnikov Institute of Radioengineering and Electronics Russian Academy of Sciences, Saratov Branch
Author for correspondence.
Email: pirpc@yandex.ru
Saratov, 410019, Russia
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