All-optical modulation in wavelength-sized epsilon-near-zero media
arXiv:1604.00844 · doi:10.1364/OL.41.003102
Abstract
We investigate the interaction of two pulses (pump and probe) scattered by a nonlinear epsilon-near-zero (ENZ) slab whose thickness is comparable with the ENZ wavelength. We show that when the probe has a narrow spectrum localized around the ENZ wavelength its transmission is dramatically affected by the intensity of the pump. Conversely, if the probe is not in the ENZ regime, its propagation is not noticeably affected by the pump. Such all-optical modulation is due to the oversensitive character of the ENZ regime and it is so efficient to even occur in a wavelength thick slab.
4 pages, 2 figures
References in corpus (6)
- Epsilon-Near-Zero (ENZ) Metamaterials and Electromagnetic Sources: Tailoring the Radiation Phase Pattern
- Epsilon-Near-Zero Al-Doped ZnO for Ultrafast Switching at Telecom Wavelengths: Outpacing the Traditional Amplitude-Bandwidth Trade-Off
- Enhanced third harmonic generation from the epsilon-near-zero modes of ultrathin films
- Ultrafast plasmonics using transparent conductive oxide hybrids in the epsilon near-zero regime
- Strong Purcell effect in anisotropic -near-zero metamaterials
- One-dimensional chirality: strong optical activity in epsilon-near-zero metamaterials