2012Unpublished venueRequires access

Study on the birefringence of ultrasonic transverse wave in (110) silicon

Seho Kwon, H. Kim

Open publisher page 1 citations

Abstract

Wave velocity in anisotropic solids depends on propagation direction as well as on the direction of particle displacement. Wave velocities with corresponding direction of particle displacement can be determined by Christoffel s equation for given direction of propagation [1]. In this research, transverse wave decomposition has been investigated when the transverse wave with various polarization propagates in [110] direction of silicon.

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What this paper is about

Wave velocity in anisotropic solids depends on propagation direction as well as on the direction of particle displacement. Wave velocities with corresponding direction of particle displacement can be determined by Christoffel s equation for given direction of propagation [1]. In this research, transverse wave decomposition has been investigated when the transverse wave with various polarization propagates in [110] direction of silicon.

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Available abstract

Wave velocity in anisotropic solids depends on propagation direction as well as on the direction of particle displacement. Wave velocities with corresponding direction of particle displacement can be determined by Christoffel s equation for given direction of propagation [1]. In this research, transverse wave decomposition has been investigated when the transverse wave with various polarization propagates in [110] direction of silicon.

Key concepts: Transverse wave, Particle displacement, Transverse plane, Birefringence, Polarization (electrochemistry), Wave propagation, Ultrasonic sensor, Optics

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