2021
DOI: 10.1007/s11182-021-02470-8
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Propagation of Electromagnetic Waves in Cholesteric Liquid Crystals

Abstract: Fundamental properties of solutions of Maxwell's equations describing the propagation of electromagnetic waves in a cholesteric liquid crystal with tensor characteristics depending on one of the spatial coordinates (the Z-axis is chosen) are investigated. The matrix of the coefficients, the structure of the matrix of Maxwell's equations, and the dispersion equations for an anisotropic liquid cholesteric medium are obtained.

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Cited by 3 publications
(3 citation statements)
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“…The main advantage of the matricant method is the uniform description of wave propagation in various effects for instance, thermoelastic, magnetoelastic, piezoelectric, and piezomagnetic effects [26][27][28].…”
Section: The Research Methodsmentioning
confidence: 99%
“…The main advantage of the matricant method is the uniform description of wave propagation in various effects for instance, thermoelastic, magnetoelastic, piezoelectric, and piezomagnetic effects [26][27][28].…”
Section: The Research Methodsmentioning
confidence: 99%
“…Матрицант әдісінің басты артықшылығы термоэлектрлік, магнитоэлектрлік, пьезоэлектрлік және пьезомагниттік әсерлер сияқты әртүрлі процестердегі толқындардың таралуын біркелкі сипаттау [18,19].…”
Section: материалдар мен әдістерunclassified
“…Матрицант әдісінің басты артықшылығы термоэлектрлік, магнитоэлектрлік, пьезоэлектрлік және пьезомагниттік әсерлер сияқты әртүрлі процестердегі толқындардың таралуын біркелкі сипаттау [18,19].…”
Section: материалдар мен әдістерunclassified