JOURNAL ARTICLE

Диэлектрическая спектроскопия и механизм фазового перехода полупроводник-металл в легированных пленках VO-=SUB=-2-=/SUB=-:Ge и VO-=SUB=-2-=/SUB=-:Mg

A. V. Il’inskiĭР. А. КастроM. E. PashkevichE. B. Shadrin

Year: 2020 Journal:   Физика и техника полупроводников Vol: 54 (4)Pages: 331-331   Publisher: Izdatel'stvo Nauka

Abstract

Abstract The frequency dependences of the dissipation factor tanδ( f ) and the Cole–Cole diagrams for germanium- and magnesium-doped vanadium-dioxide films in the range of 0.1–10^6 Hz are obtained. Measurements at temperatures between 173–373 K are performed. It is found that, at room temperature, an additional maximum in the tanδ( f ) dependence and an additional semicircle in the Cole–Cole diagram of the VO_2:Ge films as compared with those of undoped films appear at low frequencies. In the VO_2:Mg films, similar additional features in the dielectric spectra are observed at high frequencies. It is shown that the shape of the Cole – Cole diagrams for all the films is almost temperature independent in the mentioned temperature range, while the frequencies f _0 corresponding to the tanδ( f ) maxima increase with temperature. To interpret the dielectric spectroscopy data, a combined equivalent electrical circuit of the film sample is proposed. The mechanisms of the effect of Ge and Mg impurities on the characteristics of the complex Mott–Peierls semiconductor–metal phase transition are established.

Keywords:
Materials science Impurity Dissipation factor Analytical Chemistry (journal) Dielectric Phase diagram Germanium Atmospheric temperature range Vanadium Condensed matter physics Semiconductor Spectral line Doping Phase (matter) Thermodynamics Chemistry Silicon Physics Metallurgy

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Topics

Transition Metal Oxide Nanomaterials
Physical Sciences →  Materials Science →  Polymers and Plastics
Gas Sensing Nanomaterials and Sensors
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Magneto-Optical Properties and Applications
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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