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Lateral acoustic wave resonator comprising a suspended membrane of low damping resonator material

机译:包含低阻尼谐振器材料的悬浮膜的横向声波谐振器

摘要

A very high-Q, low insertion loss resonator can be achieved by storing many overtone cycles of a lateral acoustic wave (i.e., Lamb wave) in a lithographically defined suspended membrane comprising a low damping resonator material, such as silicon carbide. The high-Q resonator can sets up a Fabry-Perot cavity in a low-damping resonator material using high-reflectivity acoustic end mirrors, which can comprise phononic crystals. The lateral overtone acoustic wave resonator can be electrically transduced by piezoelectric couplers. The resonator Q can be increased without increasing the impedance or insertion loss by storing many cycles or wavelengths in the high-Q resonator material, with much lower damping than the piezoelectric transducer material.
机译:通过将侧向声波(即兰姆波)的许多泛音周期存储在包括低阻尼谐振器材料(例如碳化硅)的光刻定义的悬浮膜中,可以实现高Q,低插入损耗的谐振器。高Q谐振器可以使用高反射率声端镜在低阻尼谐振器材料中建立Fabry-Perot腔,后者可以包含声子晶体。横向泛音声波谐振器可以通过压电耦合器电转换。通过在高Q谐振器材料中存储许多周期或波长,可以在不增加阻抗或插入损耗的情况下增加谐振器Q,且其阻尼比压电换能器材料低得多。

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