Elimination of Spurious Modes in SH0 Lithium Niobate Laterally Vibrating Resonators
This letter reports on a spurious mode suppression technique for the shear horizontal (SH0) mode lithium niobate laterally vibrating resonators. The concept utilizes triangular and arched edge shapes on the transversal sides of a resonant cavity to effectively distribute and scatter the acoustic wav...
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Veröffentlicht in: | IEEE electron device letters 2015-11, Vol.36 (11), p.1198-1201 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | This letter reports on a spurious mode suppression technique for the shear horizontal (SH0) mode lithium niobate laterally vibrating resonators. The concept utilizes triangular and arched edge shapes on the transversal sides of a resonant cavity to effectively distribute and scatter the acoustic waves in the inactive regions, yielding the suppression of transverse spurious modes. 2D models and 3D finite-element analyses were employed to theoretically verify the technique. For devices with the archedshape edges, complete removal of higher order transverse modes has been experimentally demonstrated with 2× enhancement for quality factor (Q). The Q enhancement arises from the improved concentration of mechanical energy under the inter-digitated transducers. The fabricated device exhibits a Q of 920, a large electromechanical coupling (k t 2 ) of 17.8%, and a figure of merit of 164. |
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ISSN: | 0741-3106 1558-0563 |
DOI: | 10.1109/LED.2015.2478378 |