activity
20212023
most citedSpiderweb nanomechanical resonators via Bayesian optimization: inspired by nature and guided by machine learning

83 citations · 212 across the 6 of their papers we have counts for

collaborators

6 papers

cond-mat.mes-hall2023★ 32 cited

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…

cond-mat.mes-hall2023★ 38 cited

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…

physics.app-ph2022★ 4 cited

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-…

physics.app-ph2022

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…

physics.optics2022★ 55 cited

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…

cond-mat.mes-hall2021★ 83 cited

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…