83 citations · 212 across the 6 of their papers we have counts for
6 papers
Centimeter-scale nanomechanical resonators with low dissipation
Andrea Cupertino, Dongil Shin, Leo Guo +3
High-aspect-ratio mechanical resonators are pivotal in precision sensing, from macroscopic gravitational wave detectors to nanoscale acoustics. However, fabrication challenges and…
High-Strength Amorphous Silicon Carbide for Nanomechanics
Minxing Xu, Dongil Shin, Paolo M. Sberna +4
For decades, mechanical resonators with high sensitivity have been realized using thin-film materials under high tensile loads. Although there have been remarkable strides in achie…
Beating ringdowns of near-degenerate mechanical resonances
Matthijs H. J. de Jong, Andrea Cupertino, Dongil Shin +4
Mechanical resonators that possess coupled modes with harmonic frequency relations have recently sparked interest due to their suitability for controllable energy transfer and non-…
Mechanical dissipation by substrate-mode coupling in SiN resonators
Matthijs H. J. de Jong, Malte A. ten Wolde, Andrea Cupertino +3
State-of-the-art nanomechanical resonators are heralded as a central component for next-generation clocks, filters, resonant sensors and quantum technologies. To practically build…
Mechanical overtone frequency combs
Matthijs H. J. de Jong, Adarsh Ganesan, Andrea Cupertino +2
Mechanical frequency combs are poised to bring the applications and utility of optical frequency combs into the mechanical domain. So far, their main challenge has been strict requ…
Spiderweb nanomechanical resonators via Bayesian optimization: inspired by nature and guided by machine learning
Dongil Shin, Andrea Cupertino, Matthijs H. J. de Jong +3
From ultra-sensitive detectors of fundamental forces to quantum networks and sensors, mechanical resonators are enabling next-generation technologies to operate in room temperature…