Rapid Numerical Calculation of Rayleigh Surface Acoustic Wave Parameters for a Model of Coupling Modes

Introduction. Mathematical modeling is the most important stage in the development of devices based on surface acoustic waves (SAW). Computer simulations that have proven their efficiency in recent years can significantly reduce the time input and improve the accuracy of calculating the designed cha...

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Main Authors: A. S. Koigerov, O. L. Balysheva
Format: Article
Language:Russian
Published: Saint Petersburg Electrotechnical University "LETI" 2022-11-01
Series:Известия высших учебных заведений России: Радиоэлектроника
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Online Access:https://re.eltech.ru/jour/article/view/679
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author A. S. Koigerov
O. L. Balysheva
author_facet A. S. Koigerov
O. L. Balysheva
author_sort A. S. Koigerov
collection DOAJ
description Introduction. Mathematical modeling is the most important stage in the development of devices based on surface acoustic waves (SAW). Computer simulations that have proven their efficiency in recent years can significantly reduce the time input and improve the accuracy of calculating the designed characteristics. A rapid analysis of the operating characteristics of the designed acoustoelectronic devices requires the knowledge of basic parameters of acoustic waves propagating along the device substrates.  Aim. Proposal and approbation of a methodology for calculating the key parameters necessary for modeling SAW devices based on the models of P-matrix and coupling modes, based on the example of analysis of Rayleigh waves by the finite element method.  Materials and methods. The theoretical part of the work was carried out using the mathematical theory of differential equations presented in a matrix form and the finite element method. Mathematical processing was conducted in the MatLab and COMSOL environments.  Results. An original technique for deriving SAW parameters for a model of coupling modes based on a rapid algorithm implemented in COMSOL was developed. A comparison of the calculated parameters of electromechanical coupling coefficient and velocity of acoustic waves over the substrate surface with those presented in literature showed their good agreement. Based on the derived parameters, a number of transversal filters were designed. A comparison of the calculated and experimentally measured values of the transmission coefficient was performed.  Conclusion. The proposed technique for analyzing infinite periodic electrodes by the finite element method based on an analysis of eigenfrequencies and static analysis made it possible to calculate the main parameters of Rayleigh waves in conventional substrates: lithium niobate, lithium tantalate and quartz. The practical significance lies in the use of the obtained parameters in the development of various classes of acoustoelectronic devices.
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record_format Article
series Известия высших учебных заведений России: Радиоэлектроника
spelling doaj-art-4342e108ca824b1dab1414b09c6ef6e52025-08-20T03:39:49ZrusSaint Petersburg Electrotechnical University "LETI"Известия высших учебных заведений России: Радиоэлектроника1993-89852658-47942022-11-01255677910.32603/1993-8985-2022-25-5-67-79471Rapid Numerical Calculation of Rayleigh Surface Acoustic Wave Parameters for a Model of Coupling ModesA. S. Koigerov0O. L. Balysheva1Saint Petersburg Electrotechnical UniversitySaint Petersburg State University of Aerospace InstrumentationIntroduction. Mathematical modeling is the most important stage in the development of devices based on surface acoustic waves (SAW). Computer simulations that have proven their efficiency in recent years can significantly reduce the time input and improve the accuracy of calculating the designed characteristics. A rapid analysis of the operating characteristics of the designed acoustoelectronic devices requires the knowledge of basic parameters of acoustic waves propagating along the device substrates.  Aim. Proposal and approbation of a methodology for calculating the key parameters necessary for modeling SAW devices based on the models of P-matrix and coupling modes, based on the example of analysis of Rayleigh waves by the finite element method.  Materials and methods. The theoretical part of the work was carried out using the mathematical theory of differential equations presented in a matrix form and the finite element method. Mathematical processing was conducted in the MatLab and COMSOL environments.  Results. An original technique for deriving SAW parameters for a model of coupling modes based on a rapid algorithm implemented in COMSOL was developed. A comparison of the calculated parameters of electromechanical coupling coefficient and velocity of acoustic waves over the substrate surface with those presented in literature showed their good agreement. Based on the derived parameters, a number of transversal filters were designed. A comparison of the calculated and experimentally measured values of the transmission coefficient was performed.  Conclusion. The proposed technique for analyzing infinite periodic electrodes by the finite element method based on an analysis of eigenfrequencies and static analysis made it possible to calculate the main parameters of Rayleigh waves in conventional substrates: lithium niobate, lithium tantalate and quartz. The practical significance lies in the use of the obtained parameters in the development of various classes of acoustoelectronic devices.https://re.eltech.ru/jour/article/view/679acoustoelectronic devicessurface acoustic wavescoupling mode modelfinite element methodcomsolpiezoelectric materialsinter-digital transducersaw filter
spellingShingle A. S. Koigerov
O. L. Balysheva
Rapid Numerical Calculation of Rayleigh Surface Acoustic Wave Parameters for a Model of Coupling Modes
Известия высших учебных заведений России: Радиоэлектроника
acoustoelectronic devices
surface acoustic waves
coupling mode model
finite element method
comsol
piezoelectric materials
inter-digital transducer
saw filter
title Rapid Numerical Calculation of Rayleigh Surface Acoustic Wave Parameters for a Model of Coupling Modes
title_full Rapid Numerical Calculation of Rayleigh Surface Acoustic Wave Parameters for a Model of Coupling Modes
title_fullStr Rapid Numerical Calculation of Rayleigh Surface Acoustic Wave Parameters for a Model of Coupling Modes
title_full_unstemmed Rapid Numerical Calculation of Rayleigh Surface Acoustic Wave Parameters for a Model of Coupling Modes
title_short Rapid Numerical Calculation of Rayleigh Surface Acoustic Wave Parameters for a Model of Coupling Modes
title_sort rapid numerical calculation of rayleigh surface acoustic wave parameters for a model of coupling modes
topic acoustoelectronic devices
surface acoustic waves
coupling mode model
finite element method
comsol
piezoelectric materials
inter-digital transducer
saw filter
url https://re.eltech.ru/jour/article/view/679
work_keys_str_mv AT askoigerov rapidnumericalcalculationofrayleighsurfaceacousticwaveparametersforamodelofcouplingmodes
AT olbalysheva rapidnumericalcalculationofrayleighsurfaceacousticwaveparametersforamodelofcouplingmodes