collaborators

7 papers

physics.app-ph2026

In-Plane Q Anisotropy of Higher-Order XBARs

Byeongjin Kim, Ian Anderson, Ruochen Lu

128Y-cut lithium niobate (LN) laterally field-excited higher-order antisymmetric bulk acoustic resonators (XBARs) have attracted interest for high-frequency acoustic device…

physics.app-ph2026

Gradient Residual Stress in Transferred Thin-Film Lithium Niobate and Its Compensation Using Periodically Poled Piezoelectric Bilayers

Byeongjin Kim, Ian Anderson, Tzu-Hsuan Hsu +1

In this work, we experimentally investigate the gradient stress (sigma1) in 128 deg Y-cut transferred thin film lithium niobate (TFLN) films with thicknesses from 100 to 460 nm usi…

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

62.6 GHz ScAlN Solidly Mounted Acoustic Resonators

Yinan Wang, Byeongjin Kim, Nishanth Ravi +13

We demonstrate a record-high 62.6 GHz solidly mounted acoustic resonator (SMR) incorporating a 67.6 nm scandium aluminum nitride (Sc0.3Al0.7N) piezoelectric layer on a 40 nm buried…

physics.app-ph2025

Residual Stress Anisotropy In Thin-Film Lithium Niobate For Stress-Managed MEMS

Byeongjin Kim, Ian Anderson, Tzu-Hsuan Hsu +4

In this work, we present the first experimental study of residual stress and post-release beam deflection in 128-degree Y-cut thin-film lithium niobate (TFLN) on Si, revealing pron…

physics.app-ph2025

An 11.7-GHz ScAlN FBAR Filter: Case Study on Scaling Limits and Challenges

Sinwoo Cho, Byeongjin Kim, Lezli Matto +9

This paper reports an 11.7 GHz compact 50 ohm ladder filter based on single layer Scandium Aluminum Nitride (ScAlN) film bulk acoustic resonators (FBARs) with platinum (Pt) electro…