Topic
Quantum Computing
Every week, Bowl of Data tracks quantum computing as it moves from the lab toward a roadmap: hardware milestones, error correction, and which claims actually hold up. Here is every issue's quantum coverage, newest first.
Week 35 · 2026
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EuroHPC Opens €119M in Funding Calls for Quantum Technologies
EuroHPC JU has announced a massive €119 million investment initiative to bolster Europe's quantum ecosystem. The funding targets hardware development, secure communications, and standardized testing infrastructures.
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Japan’s Full-Stack Neutral-Atom Quantum Computer is Operational
The Institute for Molecular Science has operationalized Shunkai, Japan's first full-stack neutral-atom quantum computer. Developed under the Moonshot R&D Program, the system aims to scale from 50 to 10,000 qubits by 2031 to achieve fault-tolerant quantum computing.
Week 34 · 2026
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NTT DOCOMO Deploys Second D-Wave Production Quantum Application to Optimize Telecom Network Signaling
NTT DOCOMO has successfully implemented a second commercial quantum application powered by D-Wave to optimize telecommunications network signaling. The deployment focuses on optimizing Tracking Area Lists, resulting in significant reductions in both location registration and paging signal loads.
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Quantum Motion Expands to Maryland’s Discovery District to Scale US Commercial and Defense Operations
UK-based Quantum Motion is opening a new operational hub in Maryland's Discovery District to support its U.S. commercial and defense expansion. The move aims to leverage the region's proximity to federal agencies like DARPA while utilizing scalable silicon CMOS manufacturing techniques.
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Guest Post: The Role of Silicon Photonics in Delivering Usable Quantum Computing
Silicon photonics is emerging as a foundational technology for scaling quantum computers by replacing bulky free-space optics with integrated chip-scale circuits. This approach leverages mature semiconductor manufacturing to provide the precise optical control and connectivity required for large-scale, modular quantum systems.
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IBM Links Modular Cryogenic Cells to Scale Multi-Chip Architectures for 2029 Starling Quantum Computer
IBM has successfully demonstrated the linking of modular cryogenic cells to create a unified thermal environment for large-scale quantum computing. This breakthrough addresses the physical and wiring constraints of traditional cryostats, paving the way for the fault-tolerant Starling system in 2029.
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