ERC Advanced Grant · 2024
NanOengineering cutting-edge micro-Devices in the far-infrared through advanced material Embedding
Artificial semiconductor heterostructures played a pivotal role in modern optoelectronic technologies, providing a highly effective platform for the generation of light across the mid-infrared (3-25um wavelengths) and Terahertz frequency ranges (50-250um). However, their challenging quantum engineering also limited their adoption in a spectral region (25-50um) still unexplored, and their use in frontier domains as integrated photonics and quantum science. NODE aims to intersect two materials platforms that in the last decade widely progressed – artificial semiconductor heterostructures and bi-dimensional materials – to deliver a technological revolution in the whole far-infrared (FIR)…
From the public funding record at EU CORDIS. Describes the funded project, not the reviews below.