Distribution of the dynamic strain and stress components within a layered film of a SAW resonator on LiTaO3

Based on recent reports about the acoustical power distribution in SAW resonators we present an analytical method to determine the distribution of the dynamic strain and stress components in SAW resonators on LiTaO3. This enables us to calculate the absolute strain and stress values for each point i...

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Main Authors: Kubat, F, Ruile, W, Hesjedal, T, Stotz, J, Rosler, U, Reindl, L
Format: Conference item
Published: 2003
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author Kubat, F
Ruile, W
Hesjedal, T
Stotz, J
Rosler, U
Reindl, L
author_facet Kubat, F
Ruile, W
Hesjedal, T
Stotz, J
Rosler, U
Reindl, L
author_sort Kubat, F
collection OXFORD
description Based on recent reports about the acoustical power distribution in SAW resonators we present an analytical method to determine the distribution of the dynamic strain and stress components in SAW resonators on LiTaO3. This enables us to calculate the absolute strain and stress values for each point in the layer of a resonator for any driving condition and frequency. The SAW resonator is described by a P-Matrix based model, which gives us the distribution of the potential power and the resulting energy density. For calculation of the relative strain and stress values we used the Partial Wave Method. Using the correlation between the total acoustic power and the energy density distribution normal to the substrate surface, we can calculate the strain and stress values for a given input power. For the direct experimental verification of our calculations we measured the SAW induced displacements as a function of input power.
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spelling oxford-uuid:686f5d6d-b234-45a6-86bd-3f740e05ced52022-03-26T18:44:46ZDistribution of the dynamic strain and stress components within a layered film of a SAW resonator on LiTaO3Conference itemhttp://purl.org/coar/resource_type/c_5794uuid:686f5d6d-b234-45a6-86bd-3f740e05ced5Symplectic Elements at Oxford2003Kubat, FRuile, WHesjedal, TStotz, JRosler, UReindl, LBased on recent reports about the acoustical power distribution in SAW resonators we present an analytical method to determine the distribution of the dynamic strain and stress components in SAW resonators on LiTaO3. This enables us to calculate the absolute strain and stress values for each point in the layer of a resonator for any driving condition and frequency. The SAW resonator is described by a P-Matrix based model, which gives us the distribution of the potential power and the resulting energy density. For calculation of the relative strain and stress values we used the Partial Wave Method. Using the correlation between the total acoustic power and the energy density distribution normal to the substrate surface, we can calculate the strain and stress values for a given input power. For the direct experimental verification of our calculations we measured the SAW induced displacements as a function of input power.
spellingShingle Kubat, F
Ruile, W
Hesjedal, T
Stotz, J
Rosler, U
Reindl, L
Distribution of the dynamic strain and stress components within a layered film of a SAW resonator on LiTaO3
title Distribution of the dynamic strain and stress components within a layered film of a SAW resonator on LiTaO3
title_full Distribution of the dynamic strain and stress components within a layered film of a SAW resonator on LiTaO3
title_fullStr Distribution of the dynamic strain and stress components within a layered film of a SAW resonator on LiTaO3
title_full_unstemmed Distribution of the dynamic strain and stress components within a layered film of a SAW resonator on LiTaO3
title_short Distribution of the dynamic strain and stress components within a layered film of a SAW resonator on LiTaO3
title_sort distribution of the dynamic strain and stress components within a layered film of a saw resonator on litao3
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