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Deep & Emerging Tech·July 27, 2026·1 min read

Long Live Ytterbium! Long-lived States Found in Trapped Ions Open New Doors For Quantum Computing And Atomic Clocks

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Long-lived ytterbium ion states mean more stable qubits and clocks with fewer error-correction cycles — that’s a direct lever on quantum hardware overhead. If you’re betting on ion-trap ecosystems, this is another data point that lifetime and coherence are still moving targets, not fixed constraints.

Deep & Emerging Tech

Nuclear Turbines raises £15M for compact reactors it says could undercut fossil fuels

Compact reactors that can undercut fossil fuel costs would flip the economics of data centers, heavy industry, and remote infrastructure — but £15M is still technology risk money, not deployment capital. Infra-heavy operators should start mapping where modular nuclear could slot into their 5–10 year power plans, while assuming timelines and permitting will slip versus pitch decks.

Deep & Emerging Tech

Schneider Electric’s VC Arm: The AI Buildout Is Creating A New Industrial Investment Cycle

When Schneider’s SE Ventures talks about backing everything from data center infra to grid resilience and industrial AI, it’s a statement that the AI boom is an electrical and mechanical story as much as a software one. Industrial operators should be treating AI demand as justification to modernize power, cooling, and automation stacks — and expecting more strategic capital to show up in those RFPs.

Deep & Emerging Tech

Exotic Quasiparticles Promise Next-Gen Interconnects

If topological materials and exotic quasiparticles can keep interconnect resistance low as wires shrink, the bottleneck in chip performance shifts again from wiring back to transistors and packaging. Chip and systems designers should be tracking this as a 5–10 year horizon tech — not for immediate design wins, but because it may change the economics of dense AI accelerators and on-package memory.