Dangerous Bonds Individual of Hydrogenated Amorphous Silicon and Defect Absorption Spectra

Author:

Ikramov Rustamjon G.ORCID,Muminov Khurshidbek A.ORCID,Nuritdinova Mashkhura A.,Sutonov Bobur Q.,Kholmirzayev Oybek T.,Mamakhanov A’zamxo’ja A.

Abstract

In this work, defect absorption spectra for defects characteristic of hydrogenated amorphous silicon are theoretically studied. It is shown that in order to determine defect absorption spectra using the Kubo-Greenwood formula, the indefinite integral in this formula must be written in a certain form. It was discovered that electronic transitions involving defect states are divided into two parts depending on the energy of absorbed photons. The values of the partial defect absorption spectrum at low energies of absorbed photons have almost no effect on the overall defect absorption spectrum. It has been established that the main role in determining the defect absorption spectrum is played by partial spectra determined by optical transitions of electrons between allowed bands and defects. It is shown that with a power-law distribution of the density of electronic states in allowed bands, the spectra of optical transitions between them and defects do not depend on the value of this power.

Publisher

V. N. Karazin Kharkiv National University

Subject

General Physics and Astronomy,General Materials Science

Reference11 articles.

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2. M.S. Ablova, G.S. Kulikov, and S.K. Persheev, “Metastable states of undoped amorphous hydrogenated, created by γ irradiation,” FTP, 36(8), 1001-1003 (2002). (in Russian)

3. M. Gunes, and Ch.R. Wronski, “Differences in densities of charged defect states and kinetics of Staebler-Wronski effect in undoped (nontrinsic) hydrogenated amorphous silicon thin films,” J. Appl. Phys. 81(8), 3526-3536 (1997). https://doi.org/10.1063/1.365000

4. R.G. Ikramov, A.A. Mamaxanov, M.A. Nuriddinova, R.M. Jalolov, Kh.A. Muminov, and B.Q. Sultonov, “Calculation of the interband absorption spectrum of amorphous semiconductors using the Kubo-Greenwood formula,” Journal of Applied Science and Engineering, 25(5), 767-772 (2022). http://jase.tku.edu.tw/articles/jase-202210-25-5-0007

5. G.D. Cody, “Hydrogenated Amorphous Silicon, Part B, Optical Properties,” in: Semiconductors and Semimetals, vol. 21, edited by J.I. Pankove, (Academic Press Inc., Orlando, 1984).

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