Study of magneto-optical properties of aromatic liquids and their application in signal processing

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Experimental results of Faraday rotation spectra in the range of 1.8–3.65 eV were obtained for H2O, CCl4, dimethylaniline, benzene, nitrobenzene, o-toluidine, o-anisidine, m-chloroaniline and o-chloroaniline. Semi-empirical quantum mechanical self-consistent field (SCF) calculations using the MNDO/D method for organic molecules were chosen to evaluate electronic spectra in the visible range for interpretation of experimental results. It is shown that the magneto-optical response of samples varies not only depending on geometry. distribution of pi electrons in aromatic liquids, but also significantly depends on their chemical composition.

Sobre autores

S. Egamov

A. Khidirov

Muhammad al-Khwarizmi Tashkent University of Information Technologies, Samarkand Branch

Samarkand, Узбекистан

Kh. Mirzokulov

Muhammad al-Khwarizmi Tashkent University of Information Technologies, Samarkand Branch

Email: liverpool_2592@mail.ru
Samarkand, Узбекистан

B. Rakhimov

Muhammad al-Khwarizmi Tashkent University of Information Technologies

Tashkent, Узбекистан

Bibliografia

  1. Fathi M.B., Baniasadi F., Pandhi N. et al. // J. Magn. Magn. Mater. 2006. V. 469. P. 13.
  2. Gribanyov D.A., Postnova E.Y., Orlov V.N. et al. // Bull. Russ. Acad. Sci. Phys. 2024. V. 88. No. 2. P. 186.
  3. Epuu K.B., Buevapo B.H. // ЖПС. 2023. T. 90 № 6. C. 843; Yerin K.V., Vivchar V.I. // J Appl. Spectrosc. 2024. V. 90. No. 6. P. 1205.
  4. Gracheva I.E., Olchowik G., Gareev K.G. et al. // J. Phys. Chem. Solids. 2013. V. 74. P. 656.
  5. Egannov S. // Proc. of the Frontiers in Optics. OSA Technical Digest. (New York, 2006). Art. No. FWR6.
  6. Egannov S. // Proc. of the Frontiers in Optics. OSA Technical Digest. (California, 2007). Art. No. JWC21.
  7. Egannov S., Wang G., Zhang S. et al. // J. Appl. Phys. 1988. V. 63. No. 8. P. 3116.
  8. Юрасов А.Н., Яшин М.М., Ганьшина Е.А. и др. // Изв. РАН. Сер. Физ. 2022. T. 86. № 5. C. 716; Yurasov A.N., Yashin M.M., Ganshina E.A. et al. // Bull. Russ. Acad. Sci. Phys. 2022. V. 86. No. 5. P. 601.
  9. Egannov S. // Proc. of the Frontiers in Optics. OSA Technical Digest (California, 2009). Art. No. FWB3.
  10. Зсамов Ш.В., Хадиров А.М., Урина К.О. и др. // Письма в ЖТФ. 2020. T. 46. № 19. C. 7; Egannov S.V., Khidirov A.M., Urinov K.O. et al. // Tech. Phys. Lett. 2020. V. 46. No. 10. P. 947.
  11. Egamov S., Siddikov I., Khidirov A. // Proc. of the ICISCT (Tashkent, 2020). P. 1.
  12. Egamov Sh., Khidirov A., Mirzokulov Kh. // J. Eng. Res. Sci. 2022. V. 1. No. 8. P. 19.
  13. Mupzokyaoe X.B., Caazumdunoe A.H., Юрасов А.Н. // Изв. РАН. Сер. физ. 2022. Т. 86. № 5. C. 692; Mirzokulov K.B., Salakhitdinov A.N., Yurasov A.N. // Bull. Russ. Acad. Sci. Phys. 2022. V. 86. No. 5. P. 579.

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