Numerical solution of the interrelated differential equation of motion in phonon engineering
Künye
Alizadeh, A. & Marasi, H. (2017). Numerical solution of the interrelated differential equation of motion in phonon engineering. TWMS Journal Of Applied And Engineering Mathematics, 7(1), 94-100.Özet
In this work, we study numeric calculations of phonon modes in nanostructures. The motion equation of atoms in a crystal with some simplification, results in a second order ordinary differential equation and two interrelated second order differential equations for 3 polarizations according to 3 dimensions. Although first equation can easily be solved, the next two interrelated equations cannot be solved by usual numerical methods. Based on discretization, a new technique is proposed for studying the motion equations. The results are presented by dispersion curves for shear, dilatational, and flexural modes of phonons.
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http://belgelik.isikun.edu.tr/xmlui/handle/iubelgelik/2615http://jaem.isikun.edu.tr/web/index.php/archive/93-vol7no1/282
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