Photothermal, photoelectric, and photothermoelectric effects in bi-sb thin films in the terahertz frequency range at room temperature

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Abstract

The terahertz frequency range is promising for solving various practically important problems. However, for the terahertz technology development, there is still a problem with the lack of affordable and effective terahertz devices. One of the main tasks is to search for new materials with high sensitivity to terahertz radiation at room temperature. Bi1−x Sbx thin films with various Sb concentrations seem to be suitable for such conditions. In this paper, the terahertz radiation influence onto the properties of thermoelectric Bi1−x Sbx 200 nm films was investigated for the first time. The films were obtained by means of thermal evaporation in vacuum. They were affected by terahertz radiation at the frequency of 0.14 terahertz (THz) in the presence of thermal gradient, electric field or without these influences. The temporal dependencies of photoconductivity, temperature difference and voltage drop were measured. The obtained data demonstrate the possibility for practical use of Bi1−x Sbx thin films for THz radiation detection. The results of our work promote the usage of these thermoelectric materials, as well as THz radiation detectors based on them, in various areas of modern THz photonics.

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Khodzitsky, M. K., Demchenko, P. S., Zykov, D. V., Zaitsev, A. D., Makarova, E. S., Tukmakova, A. S., … Kablukova, N. S. (2021). Photothermal, photoelectric, and photothermoelectric effects in bi-sb thin films in the terahertz frequency range at room temperature. Photonics, 8(3). https://doi.org/10.3390/photonics8030076

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