collaborators

6 papers

physics.app-ph2019

A Laterally Vibrating Lithium Niobate MEMS Resonator Array Operating at 500°C in Air

Savannah R. Benbrook, Caitlin A. Chapin, Ruochen Lu +3

This paper is the first report of the high-temperature characteristics of a laterally vibrating piezoelectric lithium niobate (LiNbO) MEMS resonator array up to 500°C in air.…

eess.SP2019

5-GHz Antisymmetric Mode Acoustic Delay Lines in Lithium Niobate Thin Film

Ruochen Lu, Yansong Yang, Ming-Huang Li +2

We present the first group of acoustic delay lines (ADLs) at 5 GHz, using the first-order antisymmetric (A1) mode in Z-cut lithium niobate thin films. The demonstrated ADLs signifi…

physics.app-ph2019

High performance fully etched isotropic microring resonators in thin-film lithium niobate on insulator platform

Meisam Bahadori, Yansong Yang, Lynford L. Goddard +1

We present our design, fabrication, and experimental results for very high-performance isotropic microring resonators with small radii (~ 30 μm) based on single-mode strip waveguid…

eess.SP2019

4.5 GHz Lithium Niobate MEMS Filters with 10% Fractional Bandwidth for 5G Front-ends

Yansong Yang, Ruochen Lu, Liuqing Gao +1

This paper presents a new class of micro-electro-mechanical system (MEMS) C-band filters for 5G front-ends. The filter is comprised of resonators based on the first-order asymmetri…

physics.app-ph2018

Toward Ka Band Acoustics: Lithium Niobate Asymmetrical Mode Piezoelectric MEMS Resonators

Yansong Yang, Ruochen Lu, Tomas Manzaneque +1

This work presents a new class of micro-electro-mechanical system (MEMS) resonators toward Ka band (26.5-40GHz) for fifth-generation (5G) wireless communication. Resonant frequenci…

eess.SP2018

A Radio Frequency Non-reciprocal Network Based on Switched Acoustic Delay Lines

Ruochen Lu, Tomas Manzaneque, Yansong Yang +3

This work demonstrates the first non-reciprocal network based on switched low-loss acoustic delay lines. The 4-port circulator is built upon a recently reported frequency-independe…