collaborators

5 papers

cond-mat.mes-hall2025

Force sensing with a graphene nanomechanical resonator coupled to photonic crystal guided resonances

Heng Lu, Tingting Li, Hui Hu +5

Achieving optimal force sensitivity with nanomechanical resonators requires the ability to resolve their thermal vibrations. In two-dimensional resonators, this can be done by meas…

cond-mat.mes-hall2025

Symmetry breaking of large-amplitude parametric oscillations in few-layer graphene nanomechanical resonators

Chen Yang, YuBin Zhang, Heng Lu +6

Graphene nanomechanical resonators are well suited for the study of parametric oscillations. Their large frequency tunability and their pronounced nonlinearities enable an efficien…

cond-mat.mes-hall2025

Hysteretic responses of nanomechanical resonators based on crumpled few-layer graphene

Heng Lu, Chen Yang, Ce Zhang +8

Manipulating two-dimensional materials occasionally results in crumpled membranes. Their complicated morphologies feature an abundance of folds, creases and wrinkles that make each…

cond-mat.mes-hall2025

A few-layer graphene nanomechanical resonator driven by digitally modulated video signals

Ce Zhang, Heng Lu, Chen Yang +4

Nanomechanical resonators driven by multifrequency signals combine the physics of mesoscopic vibrations and the technologies of radio communication. Their simplest property stems f…

quant-ph2024

Tailoring the light-matter interaction for high-fidelity holonomic gate operations in multiple systems

Zhihuang Kang, Shutong Wu, Kunji Han +4

Realization of quantum computing requires the development of high-fidelity quantum gates that are resilient to decoherence, control errors, and environmental noise. While non-adiab…