Microwave induced elastic deformation of a metallic thin film
arXiv:1304.2899 · doi:10.1088/0022-3727/46/39/395104
Abstract
The microwave induced elastic deformation of a metallic thin film is computed numerically and we found that the deformation can be significantly enhanced at resonance. We show that an analytical transmission line model can reproduce the numerical results almost quantitatively and at the same time reveal the underlying physics.
8 pages,3 figures
References in corpus (6)
- Magnetoelastic nonlinear metamaterials
- Optical forces in nanowire pairs and metamaterials
- Metamaterial 'Gecko Toe': Optically-Controlled Adhesion to Any Surface
- Strong light-induced negative optical pressure arising from the kinetic energy of conduction electrons in plasmonic cavities
- Sizable electromagnetic forces in parallel-plate metallic cavity
- Optomechanical deformation and strain in elastic dielectrics