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From the 1 of 32 linked papers with an AI index.

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20242026
most citedBimorph Lithium Niobate Piezoelectric Micromachined Ultrasonic Transducers

2 citations · 2 across the 10 of their papers we have counts for

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10 papers · 1 filter

eess.SP2026

Nonlinear Characterization of Thin-Film LiNbO3 Acoustic Filters

Omar Barrera, Bryan T. Bosworth, Taran Anusorn +10

Compact, high-performance components in millimeter-wave (mmWave) communication systems demand new acoustic filter technology at increasingly higher frequencies. Among various promi…

eess.SP2026

Q-Enhanced SH-SAW Ladder Filter in Thin-Film Lithium Tantalate Using Bartlett Apodization

Taran Anusorn, Tzu-Hsuan Hsu, Yuchen Ma +1

Shear-horizontal surface acoustic wave (SH-SAW) filters have shown strong potential for low-loss, compact, GHz-frequency RF front ends. In this work, we demonstrate a high-performa…

eess.SP2026

High Coupling Tunable Acoustic Resonators in Monolithic Barium Titanate

Ian Anderson, Agham Posadas, Alexander A. Demkov +1

The growing number of wireless communication bands has driven demand for compact, low-loss, and frequency adjustable RF filtering. Tunable acoustic resonators are well suited to ad…

eess.SP20261 cited

50 GHz Piezoelectric Acoustic Filter

Omar Barrera, Jack Kramer, Lezli Matto +5

This paper presents significant frequency scaling of acoustic filter technology to 50 GHz. This achievement is enabled by the P3F LiNbO3 multilayer stack, in which piezoelectric th…

eess.SP2026

Lattice XBAR Filters in Thin-Film Lithium Niobate

Taran Anusorn, Byeongjin Kim, Ian Anderson +2

This work presents the demonstration of lattice filters based on laterally excited bulk acoustic resonators (XBARs). Two filter implementations, namely direct lattice and layout-ba…

eess.SP2026

19.3 GHz Acoustic Filter with High Close-in Rejection in Tri-layer Thin-Film Lithium Niobate

Omar Barrera, Sinwoo Cho, Jack Kramer +3

Acoustic filters are preferred front-end solutions at sub-6 GHz due to their superior frequency selectivity compared to electromagnetic (EM) counterparts. With the ongoing developm…