collaborators

13 papers

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…

cond-mat.mtrl-sci2026

Emergence of millimeter-wave resonances in self-assembled ferroelectric metamaterials

Florian Bergmann, Peter Meisenheimer, Aiden Ross +26

Resonators are a key component in modern communications and computing. As demand and technological advances push component requirements into the terahertz regime, there is signific…

eess.SP2026

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…

physics.app-ph2026

Phononic Combs in Lithium Niobate Acoustic Resonators

Ian Anderson, Jack Kramer, Tzu-Hsuan Hsu +3

Frequency combs consist of a spectrum of evenly spaced spectral lines. Optical frequency combs enable technologies ranging from timing, LiDAR, and ultra-stable signal sources. Micr…

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…

physics.optics2026

Uncooled low-noise thin-film optomechanical resonator for thermal sensing on lithium niobate

Yue Yu, Ran Yin, Ian Anderson +9

Optomechanical transduction harnesses the interaction between optical fields and mechanical motion to achieve sensitive measurement of weak mechanical quantities with inherently lo…