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Comparison characteristics of surface acoustic waves propagating on LGT and quartz substrates

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【Author】 ZHANG Guowei SHI Wenkang JI Xiaojun HAN Tao(School of Electronics & Information Technology, Shanghai Jiaotong Univ. Shanghai 200030)

【摘要】 <正> For comprehending the propagation characteristics of surface acoustic waves (SAW) on novel piezoelectric crystal Langatate (LGT), the numerical analysis of the most important propagation characteristics of surface acoustic waves (SAW) on LGT are presented and compared with that of quartz. The results are that the phase velocity on LGT is generally about 1000 m/s slower than that on quartz; there are zero temperature cuts and pure mode directions on LGT; the electromechanical coupling coefficient (K2) of LGT is larger than that of quartz. The results show that LGT has lower propagation velocity, higher electromechanical coupling coefficient, good temperature stability and other good characteristic. The results also show that there are somewhat deviations with different material constants, especially, the temperature coefficient of frequency.

【Abstract】 For comprehending the propagation characteristics of surface acoustic waves (SAW) on novel piezoelectric crystal Langatate (LGT), the numerical analysis of the most important propagation characteristics of surface acoustic waves (SAW) on LGT are presented and compared with that of quartz. The results are that the phase velocity on LGT is generally about 1000 m/s slower than that on quartz; there are zero temperature cuts and pure mode directions on LGT; the electromechanical coupling coefficient (K2) of LGT is larger than that of quartz. The results show that LGT has lower propagation velocity, higher electromechanical coupling coefficient, good temperature stability and other good characteristic. The results also show that there are somewhat deviations with different material constants, especially, the temperature coefficient of frequency.

【基金】 the National Natural Science Foundation of China(60274062).
  • 【文献出处】 Chinese Journal of Acoustics ,声学学报(英文版) , 编辑部邮箱 ,2004年03期
  • 【分类号】O422
  • 【下载频次】19
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