SOURCE-LINKED INTELLIGENCE
High-speed integrated ultra-violet electro-optic modulators
High-speed integrated ultra-violet electro-optic modulators Quantum computing has the potential to revolutionize various fields including life science, communication, and artificial intelligence. Strontium-based neutral atoms are emerging as a promising approach to quantum computing due to their long coherence time and scalability potential. However, a key challenge in these systems is the optimal and scalable control of qubit gates at UV wavelengths, an area where there remains a significant gap. The objective of this project is to develop high-speed integrated electro-optic modulators (EOMs) at UV wavelengths for optimal, high-fidelity control of neutral-atom-based qubit gates. To date, attempts to realize such systems have faced obstacles due to challenges of suitable materials, nanofabrication techniques, and integrated UV optoelectronic measurement strategies. To address these, I propose using the novel thin-film lithium tantalate on insulator (LTOI) material platform and exploring its nanofabrication methodologies. The first aim is to develop design
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- recordType
- award
- status
- SIGNED
- region
- EU
- value
- 217965.12
- unit
- EUR
Evidence & attribution
European Commission, CORDIS Horizon Europe project dataset. Metadata adapted.
License: CORDIS reuse policy
First collected: 2026-09-20T03:21:21.440Z. This is not the publication date.