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Temperature Characteristics of Surface Acoustic Waves Propagating on La_3Ga_5SiO_4 Substrates 被引量:2

Temperature Characteristics of Surface Acoustic Waves Propagating on La_3Ga_5SiO_4 Substrates
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摘要 Langasite (LGS) is a novel piezoelectric crystal. The authors numerically analyses the temperature stability of surface acoustic waves (SAW) and the relation of SAW propagation with temperature on certain optimal cuts on LGS in this paper. The results show that LGS has better temperature stability than traditional piezo crystals. The results also demonstrate that the velocity of SAW decrease with temperature, the electro-mechanical coupling constant (k2) and temperature coefficient of frequency increases parabolically and the power flow angle increases linearly on certain optimal cuts of LGS. The calculation result compared with the experimental and show good agreement. Langasite (LGS) is a novel piezoelectric crystal. The authors numerically analyses the temperature stability of surface acoustic waves (SAW) and the relation of SAW propagation with temperature on certain optimal cuts on LGS in this paper. The results show that LGS has better temperature stability than traditional piezo crystals. The results also demonstrate that the velocity of SAW decrease with temperature, the electro-mechanical coupling constant (k2) and temperature coefficient of frequency increases parabolically and the power flow angle increases linearly on certain optimal cuts of LGS. The calculation result compared with the experimental and show good agreement.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第1期63-66,共4页 材料科学技术(英文版)
关键词 La3Ga5SiO4 (LGS) Surface acoustic wave (SAW) Temperature characteristic La3Ga5SiO4 (LGS), Surface acoustic wave (SAW), Temperature characteristic
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  • 1Hiroaki Satoh and Atsushi Mori: Jan. J. Appliance . 1997 被引量:1
  • 2Kenji Inoue and Katsuo Sato: in Proc.IEEE Ultrason[].Symposium International.1998 被引量:1

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