RUS  ENG
Full version
JOURNALS // Fizika i Tekhnika Poluprovodnikov // Archive

Fizika i Tekhnika Poluprovodnikov, 2021 Volume 55, Issue 9, Pages 789–797 (Mi phts4984)

XXV International Symposium "Nanophysics and Nanoelectronics", Nizhny Novgorod, March 9-12, 2021

Quantum transport in a semiconductor nanolayer taking into account the surface scattering of carriers

I. A. Kuznetsova, O. V. Savenko, D. N. Romanov

P.G. Demidov Yaroslavl State University

Abstract: The problem concerning the electrical conductivity of a thin conducting nanolayer is solved within the quantum theory of transport. The layer thickness can be comparable to or shorter than the de Broglie wavelength of carriers. The isoenergetic surface has the form of an ellipsoid of revolution with the major axis parallel to the layer plane. Analytical equations for the conductivity-tensor components as functions of the dimensionless thickness, chemical potential, ellipticity parameter, and surface roughness are derived. The conductivity is analyzed in the limiting cases of a degenerate and nondegenerate electron gas. The results are compared with the available experimental data for a silicon layer.

Keywords: thin layer, Liouville equation, Soffer model, electrical conductivity, isoenergetic surface.

Received: 12.04.2021
Revised: 19.04.2021
Accepted: 19.04.2021

DOI: 10.21883/FTP.2021.09.51296.26


 English version:
Semiconductors, 2021, 55:9, 755–763

Bibliographic databases:


© Steklov Math. Inst. of RAS, 2024