Characteristics of Leaky Surface Acoustic Waves Propagating on LiNbO_3 and LiTaO_3 Substrates
スポンサーリンク
概要
- 論文の詳細を見る
Two types of leaky waves are obtained in this paper. They are the first leaky wave, whose phase velocity is between those of slow and fast shear waves, and the second leaky waves, whose phase velocity is greater than that of the fast shear wave. The characteristics of leaky waves propagating on LiNbO_3 and LiTaO_3 substrates are theoretically investigated by changing cut angles and propagating directions. Propagation loss of the first leaky wave for an electrically open surface becomes almost zero at φ=20, 40, 80, 100, 140 and 160° on (φ, 90°, 0°)-cut LiNbO_3 substrate, and K^2 is 16.2% at these cuts. Phase velocities of the second leaky waves propagating on (90°, 90°, ψ)-cut LiTaO_3 and LiNbO_3 substrates are twice as fast as those of Rayleigh waves, and electromechanical coupling coefficient (K^2) of 2.14%, is obtained at ψ=31° on the LiTaO_3 substrate. Propagation losses of both electrically open and short surfaces are almost zero at ψ=164° on the LiTaO_3 substrate. K^2 of as high as 12.9% is obtained at ψ=36° on the LiNbO_3 substrate. Propagation losses of both electrically open and short surfaces are almost zero at ψ=163° on the LiNbO_3 substrate.
- 社団法人応用物理学会の論文
- 1995-05-30
著者
-
Shimizu Yasutaka
Cradle Tokyo Institute Of Technology
-
TONAMI Shigetaka
CRADLE, Tokyo Institute of Technology
-
Nishikata Atsushi
Cradle Tokyo Institute Of Technology
-
Tonami S
Tokyo Inst. Technol. Tokyo Jpn
-
Tonami Shigetaka
Cradle Tokyo Institute Of Technology
関連論文
- Effects of a thin aluminum plate on the characteristics of leaky surface waves propagating on Li__2B__4O__7 substrate
- Characteristics of Leaky Surface Waves Propagating on LiTaO_3 Substrate : SAW and Communication Device
- Elastic Constants and Temperature Coefficients of LiTaO_3 for SAW Application : SAW and Communication Devices
- Characteristic of Leaky Surface Waves Propagating on Li_2B_4O_7 substrate with a Thin Aluminum Plate : SAW and Communication Devices
- Characteristics of Leaky Surface Wave Propagating on Li_2B_4O_7 Substrate : SAW and Communication Devices
- Characteristics of Surface Acoustic Waves Propagating on Bi_GeO_ Substrate : SAW and Communication Devices
- Characteristics of Rayleigh and Leaky Surface Acoustic Wave Propagating on a La_3Ga_5SiO_ Substrate
- New High-Phase-Velocity Leaky Surface Acoustic Wave Mode on LiTaO_3 and LiNbO_3
- Characteristics of Surface Acoustic Waves Propagating on a La_3Ga_5SiO_ Substrate
- Material Constants of LiTaO_3 Determined from Surface Acoustic Wave Velocities
- Leaky Surface Wave Propagating on LiTaO_3 Substrate : SAW and BAW Materials, Devices and Theories
- Accuracy of Surface Acoustic Wave Velocity Measured to Determine the Elastic Constants on LiTaO_3 Substrate
- A Study on Measuring Techniques of Phase Velocities of Surface Acoustic Waves
- Zero Slope Temperature SiC/SiO_2/LiTaO_3 Substrate for Boundary Acoustic Waves : SAW and Communication Devices
- Acoustic Boundary Waves Propagating along a Thin Layer between Two Bounded Substrates : SAW and Communication Devices
- Stoneley Waves Propagating along an Interface between Piezoelectric Material and Glass : Surface Acoustic Waves and Devices
- Leaky Surface Wave on Quarts and a New Cut with Extremely Small Temperature Coefficient : SAW and Communication Devices
- An Experiment on Presentation Effectiveness of Texts and Summaries
- An Experiment on Presentation Effectiveness--The Effectiveness of Texts and Summaries
- Analysis of Leaky Surface Acoustic Waves Propagating on Piezoelectric Substrates of Finite Thickness
- The Second-Order Temperature Coefficient of Surface Wave Propagating on Quartz Substrate with Arbitrary Cuts : SAW and Communication Devices
- Characteristics of Leaky Surface Acoustic Waves Propagating on LiNbO_3 and LiTaO_3 Substrates
- SAW Propagation Characteristics of Piezoelectric Ceramics Polarized in an Arbitrary Direction : SAW and Communication Devices
- A Theoretical Study of the Characteristics of Leaky-Surface-Acoustic-Wave Filters with Propagation Loss by an Equivalent Circuit Model : SAW and BAW Materials, Devices and Theories
- Analysis of Leaky Surface Acoustic Waves Propagating on Piezoelectric Substrates of Finite Thickness