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Mode Analysis of Pt/LGS Surface Acoustic Wave Devices

Platinum (Pt) gratings on langasite (LGS) substrates are a widely used structures in high temperature surface acoustic wave (SAW) devices. Multiple modes can be excited in Pt [Formula: see text] LGS SAW devices owing to the heavy weight of the Pt electrode and leaky waves in the LGS substrate. In th...

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Autores principales: Xu, Hongsheng, Jin, Hao, Dong, Shurong, Song, Xinyu, Chen, Jinkai, Xuan, Weipeng, Huang, Shuyi, Shi, Lin, Luo, Jikui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7764756/
https://www.ncbi.nlm.nih.gov/pubmed/33322434
http://dx.doi.org/10.3390/s20247111
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author Xu, Hongsheng
Jin, Hao
Dong, Shurong
Song, Xinyu
Chen, Jinkai
Xuan, Weipeng
Huang, Shuyi
Shi, Lin
Luo, Jikui
author_facet Xu, Hongsheng
Jin, Hao
Dong, Shurong
Song, Xinyu
Chen, Jinkai
Xuan, Weipeng
Huang, Shuyi
Shi, Lin
Luo, Jikui
author_sort Xu, Hongsheng
collection PubMed
description Platinum (Pt) gratings on langasite (LGS) substrates are a widely used structures in high temperature surface acoustic wave (SAW) devices. Multiple modes can be excited in Pt [Formula: see text] LGS SAW devices owing to the heavy weight of the Pt electrode and leaky waves in the LGS substrate. In this work, we report on a detailed mode analysis of Pt [Formula: see text] LGS SAW devices, where three commonly used LGS cuts are considered. A three-dimensional (3D) finite element method (FEM) numerical model was developed, and the simulation and experiment results were compared. The experiment and simulation results showed that there are two modes excited in the Pt [Formula: see text] LGS SAW devices with Euler angle (0 [Formula: see text] , 138.5 [Formula: see text] , 27 [Formula: see text]) and (0 [Formula: see text] , 138.5 [Formula: see text] , 117 [Formula: see text]), which are Rayleigh-type SAW and SH-type leaky wave, respectively. Only the Rayleigh-type mode was observed in the Pt [Formula: see text] LGS SAW devices with Euler angle (0 [Formula: see text] , 138.5 [Formula: see text] , 72 [Formula: see text]). It was found that the acoustic velocities are dependent on the wavelength, which is attributed to the change of wave penetration depth in interdigital transducers (IDTs) and the velocity dispersion can be modulated by the thickness of the Pt electrode. We also demonstrated that addition of an Al(2)O(3) passivation layer has no effect on the wave modes, but can increase the resonant frequencies. This paper provides a better understanding of the acoustic modes of Pt [Formula: see text] LGS SAW devices, as well as useful guidance for device design. It is believed that the Rayleigh-type SAW and SH-type leaky waves are potentially useful for dual-mode sensing applications in harsh environments, to achieve multi-parameter monitoring or temperature-compensation on a single chip.
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spelling pubmed-77647562020-12-27 Mode Analysis of Pt/LGS Surface Acoustic Wave Devices Xu, Hongsheng Jin, Hao Dong, Shurong Song, Xinyu Chen, Jinkai Xuan, Weipeng Huang, Shuyi Shi, Lin Luo, Jikui Sensors (Basel) Article Platinum (Pt) gratings on langasite (LGS) substrates are a widely used structures in high temperature surface acoustic wave (SAW) devices. Multiple modes can be excited in Pt [Formula: see text] LGS SAW devices owing to the heavy weight of the Pt electrode and leaky waves in the LGS substrate. In this work, we report on a detailed mode analysis of Pt [Formula: see text] LGS SAW devices, where three commonly used LGS cuts are considered. A three-dimensional (3D) finite element method (FEM) numerical model was developed, and the simulation and experiment results were compared. The experiment and simulation results showed that there are two modes excited in the Pt [Formula: see text] LGS SAW devices with Euler angle (0 [Formula: see text] , 138.5 [Formula: see text] , 27 [Formula: see text]) and (0 [Formula: see text] , 138.5 [Formula: see text] , 117 [Formula: see text]), which are Rayleigh-type SAW and SH-type leaky wave, respectively. Only the Rayleigh-type mode was observed in the Pt [Formula: see text] LGS SAW devices with Euler angle (0 [Formula: see text] , 138.5 [Formula: see text] , 72 [Formula: see text]). It was found that the acoustic velocities are dependent on the wavelength, which is attributed to the change of wave penetration depth in interdigital transducers (IDTs) and the velocity dispersion can be modulated by the thickness of the Pt electrode. We also demonstrated that addition of an Al(2)O(3) passivation layer has no effect on the wave modes, but can increase the resonant frequencies. This paper provides a better understanding of the acoustic modes of Pt [Formula: see text] LGS SAW devices, as well as useful guidance for device design. It is believed that the Rayleigh-type SAW and SH-type leaky waves are potentially useful for dual-mode sensing applications in harsh environments, to achieve multi-parameter monitoring or temperature-compensation on a single chip. MDPI 2020-12-11 /pmc/articles/PMC7764756/ /pubmed/33322434 http://dx.doi.org/10.3390/s20247111 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xu, Hongsheng
Jin, Hao
Dong, Shurong
Song, Xinyu
Chen, Jinkai
Xuan, Weipeng
Huang, Shuyi
Shi, Lin
Luo, Jikui
Mode Analysis of Pt/LGS Surface Acoustic Wave Devices
title Mode Analysis of Pt/LGS Surface Acoustic Wave Devices
title_full Mode Analysis of Pt/LGS Surface Acoustic Wave Devices
title_fullStr Mode Analysis of Pt/LGS Surface Acoustic Wave Devices
title_full_unstemmed Mode Analysis of Pt/LGS Surface Acoustic Wave Devices
title_short Mode Analysis of Pt/LGS Surface Acoustic Wave Devices
title_sort mode analysis of pt/lgs surface acoustic wave devices
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7764756/
https://www.ncbi.nlm.nih.gov/pubmed/33322434
http://dx.doi.org/10.3390/s20247111
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