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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Low-Loss Unidirectional Acoustic Focusing Transducer in Thin-Film Lithium Niobate
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Low-Loss Unidirectional Acoustic Focusing Transducer in Thin-Film Lithium Niobate

机译:薄膜铌酸锂中的低损耗单向声调焦换能器

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In this work, we present gigahertz low-loss unidirectional acoustic focusing transducers in thin-film lithium niobate. The design follows the anisotropy of fundamental symmetric (S0) waves in X-cut lithium niobate. The implemented acoustic delay line testbed consisting of a pair of the proposed transducers shows a low insertion loss of 4.2 dB and a wide fractional bandwidth of 7.5 at 1 GHz. The extracted transducer loss is 1.46 dB, and the propagation loss of the S0 waves is 0.0126 dB/amp;inline-formulaamp; amp;tex-math notation="LaTeX"amp;$mu text{m}$ amp;/tex-mathamp;amp;/inline-formulaamp;. The design framework is readily extendable to other acoustic modes, given consideration on the optimal orientation for power flow and electromechanical transduction.
机译:在这项工作中,我们提出了薄膜铌酸锂中的千兆赫兹低损耗单向声学聚焦换能器。该设计遵循 X-cut 铌酸锂中基本对称 (S0) 波的各向异性。由一对所提出的探头组成的声学延迟块测试台在1 GHz时显示出4.2 dB的低插入损耗和7.5%的宽分数带宽。提取的换能器损耗为1.46 dB,S0波的传播损耗为0.0126 dB/inline-formula tex-math notation=“LaTeX”$mu text{m}$ /tex-math/inline-formula。考虑到潮流和机电转导的最佳方向,该设计框架很容易扩展到其他声学模式。

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