Integrated Photonics for Stable Ion Trap Qubit for Quantum Computing, Multi-Channel Optical Transceiver and LiDAR Applications
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Technology Overview
This novel electro optical module for trapped ion enables large-scale fabrication of compact quantum chips using CMOS technology, with applications in quantum computing, optical communication, and LiDAR.
Electro-optical trapped ion module
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Compatible Large-Scale Fabrication:
Enable scalable, high volume manufacturing and reduces production cost compared to bespoke quantum hardware
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Compact Quantum Chip Architecture:
Integrates silicon photonics (passive + active components) with planar ion trap electrodes. Reduces system footprint
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Reduced System Complexity:
On-chip integration reduces alignment challenges. Minimises need for external optical components and simplifies packaging and deployment
Maritime Use Cases

The integrated photonics technologies could be leveraged to develop advanced communication systems, high-precision navigation, and environmental sensing capabilities for maritime applications, such as autonomous vehicles, remote monitoring, or infrastructure inspection.

The stable ion trap qubit technology could enable the creation of highly accurate and reliable timing references for maritime navigation and positioning systems, improving the resilience and precision of these critical functions in the absence of GPS signals.

The potential multi-channel optical transceiver and LiDAR technologies developed could be integrated into maritime autonomous systems, such as USVs, AUVs, or ROVs, to enhance their data transmission, environmental perception, and obstacle detection capabilities.
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