Title :
Crystal growth and high temperature applications of 3” Langatate
Author :
Xiaoniu Tu ; Yanqing Zheng ; Kainan Xiong ; Quanming Lin ; Yaqiao Li ; Ying Shi ; Erwei Shi
Author_Institution :
Lab. of Silicon Carbide, Shanghai Inst. of Ceramics, Shanghai, China
Abstract :
Langasite (La3Ga5SiO14, LGS) and its two isomorphs Langatate (La3Ga5.5Ta0.5O14, LGT) and Langanite (La3Ga5.5Ta0.5O14, LGN) belong to the same point group (32) as quartz. These LGS-type (LGX) crystals have attracted much attention over the past years and have been regarded as the new candidate materials for bulk acoustic wave (BAW), surface acoustic wave (SAW) and high temperature sensor devices, because of their outstanding properties. Firstly, the piezoelectric constants of the LGX are about two times larger than that of quartz, so they are expected to have higher electromechanical coupling coefficient than quartz; Secondly, they are reported have no phase transitions from room temperature to their melting points (about 1470°C); Thirdly, they have very low acoustic friction which is an indication of high Q factor, about twice of that of quartz; Finally, all of them can be grown by Czochralski and vertical Bridgman methods, and large size (about 3” ~4”) crystal has been obtained.
Keywords :
Q-factor; bulk acoustic wave devices; crystal growth from melt; crystal structure; friction; gallium compounds; high-temperature techniques; lanthanum compounds; melting point; piezoelectric devices; piezoelectricity; quartz; surface acoustic wave sensors; surface acoustic waves; Czochralski and vertical Bridgman method; LGS crystal; LGT crystal; LGX; La3Ga5.5Ta0.5O14; La3Ga5SiO14; Q factor; acoustic friction; bulk acoustic wave; crystal growth; electromechanical coupling coefficient; high temp temperature sensor device; high temperature applications; piezoelectric constant; quartz crystal; surface acoustic wave; Acoustic waves; Conductivity; Crystals; Laboratories; Silicon carbide; Temperature;
Conference_Titel :
Frequency Control Symposium (FCS), 2014 IEEE International
Conference_Location :
Taipei
DOI :
10.1109/FCS.2014.6859937