ERC Advanced Grant · 2024
Light interaction with synthetically moving metamaterials
Metamaterials rely on spatial structures on the scale of light wavelength to transform and enhance their macroscopic properties. Current metamaterials passively redistribute wave energy in space only, enabling, for example, sub-micron flat lenses and ultra-compact spectrometers. In the last few years, exciting breakthroughs have shown that metamaterials can also power wave-based analogue computation a technology for fast, massively parallel computation at a fraction of the power. With low energy consumption, metamaterials have the potential to address sustainable computing, and the rapid adoption of power-hungry artificial intelligence. The challenge is to exploit the temporal dimension and…
From the public funding record at EU CORDIS. Describes the funded project, not the reviews below.