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| Funder | European Commission |
|---|---|
| Recipient Organization | Erevnitiko Panepistimiako Institouto Systimaton Epikoinonion Kai Ypologiston |
| Country | Greece |
| Start Date | Sep 01, 2022 |
| End Date | Feb 28, 2026 |
| Duration | 1,276 days |
| Number of Grantees | 13 |
| Roles | Participant; Associated Partner; Coordinator |
| Data Source | European Commission |
| Grant ID | 101070441 |
Despite the huge progress by photonics, extended spectral bands at wavelengths below 1100 nm remain heavily underserved in terms of integration solutions.
At the same time, the silicon nitride is booming and the lithium niobate is making an impressive comeback in the form of lithium niobate on insulator (LNOI), with both materials being transparent both in the visible and the NIR.
With all these viewed as a unique opportunity, LOLIPOP steps in to develop a disruptive platform that will offer the highest integration, modulation and second order nonlinear performance in the entire spectrum from 400 up to 1600 nm, based on the combination of the LNOI and the silicon-nitride (TriPleX) technology.
To this end, LOLIPOP will develop die-bonding and micro-transfer-printing methods for low-loss (
Optagon Fotoniki Idiotiki Kefalaiouchiki Etairia; Csem Centre Suisse D'Electronique Et de Microtechnique Sa - Recherche Et Developpement; Systhmata Ypologistikis Orashs Irida Labs Ae; Interuniversitair Micro-Electronica Centrum; Phix Bv; Quix Quantum Bv; Universiteit Twente; Lionix International Bv; Polytec Gmbh; Quix Quantum Gmbh; Superlum Diodes Limited; Erevnitiko Panepistimiako Institouto Systimaton Epikoinonion Kai Ypologiston; University College Cork - National University of Ireland, Cork
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