Nonlinearity in nanomechanical cantilevers
arXiv:1301.1750 · doi:10.1103/PhysRevB.87.024304
Abstract
Euler-Bernoulli beam theory is widely used to successfully predict the linear dynamics of micro- and nano-cantilever beams. However, its capacity to characterize the nonlinear dynamics of these devices has not yet been rigorously assessed, despite its use in nanoelectromechanical systems development. In this article, we report the first highly controlled measurements of the nonlinear response of nanomechanical cantilevers using an ultra-linear detection system. This is performed for an extensive range of devices to probe the validity of Euler-Bernoulli theory in the nonlinear regime. We find that its predictions deviate strongly from our measurements for the nonlinearity of the fundamental flexural mode, which show a systematic dependence on aspect ratio (length/width) together with random scatter. This contrasts with the second mode, which is always found to be in good agreement with theory. These findings underscore the delicate balance between inertial and geometric nonlinear effects in the fundamental mode, and strongly motivate further work to develop theories beyond the Euler-Bernoulli approximation.
24 pages, 6 figures
References in corpus (3)
Cited by in corpus (16)
- Surpassing fundamental limits of oscillators using nonlinear resonators
- Dynamics of 2D Material Membranes
- Real-time measurement of nanotube resonator fluctuations in an electron microscope
- Shape tailoring to enhance and tune the properties of graphene nanomechanical resonators
- Robustness of continuous-variable entanglement via geometrical nonlinearity
- Quadrature squeezing enhances Wigner negativity in a mechanical Duffing oscillator
- Nonlinear motion and mechanical mixing in as-grown GaAs nanowires
- Steady-state mechanical squeezing and ground-state cooling of a Duffing anharmonic oscillator in an optomechanical cavity assisted by a nonlinear medium
- Size Effects on Mechanical Properties of Micro/Nano Structures
- Quantum Decoherence of Charge Qubit coupled to Nonlinear Nanomechanical Resonator
- Filtration and Extraction of Quantum States from Classical Inputs
- Temporal Behavior of Rabi Oscillation in Nanomechanical QED System with a Nonlinear Resonator
- Micromanipulation transfer of membrane resonators for circuit optomechanics
- Electromagnetic Continuum Induced Nonlinearity
- Duffing revisited: Phase-shift control and internal resonance in self-sustained oscillators
- Geometrical Nonlinearity of Circular Plates and Membranes: an Alternative Method