Novel quantum primitive achieves √n precision gain over classical majority voting by leveraging GHZ entanglement for phase estimation. Demonstrates Heisenberg-limited scaling on trapped-ion hardware with rigorous theoretical guarantees.

Novel quantum primitive achieves √n precision gain over classical majority voting by leveraging GHZ entanglement for phase estimation. Demonstrates Heisenberg-limited scaling on trapped-ion hardware with rigorous theoretical guarantees.
Quantinuum received $100M in CHIPS R&D funding to advance trapped-ion quantum computer manufacturing with partners GlobalFoundries and Monarch Quantum, targeting scalable fault-tolerant systems.
Quantinuum finalized $100M in CHIPS R&D funding to advance fault-tolerant trapped-ion quantum computers, partnering with GlobalFoundries for ion trap fabrication and Monarch Quantum for laser/optical components to scale U.S. production.
Jülich Research Centre and eleQtron have inaugurated JION, a trapped-ion quantum computer. This collaboration represents a significant milestone in advancing practical quantum computing hardware.
Jülich officially inaugurates JION, a trapped-ion quantum computer using ytterbium atoms. Integrated with supercomputers via JUNIQ, it begins with few qubits, scaling to 10 by mid-2027. New funding initiatives aim for further scaling.
Eleqtron's trapped-ion quantum computer 'Jion' now operational at Germany's Jülich research center, expanding the facility's quantum computing access to six systems. Strengthens European quantum sovereignty and research capabilities.
EPB opens first integrated trapped-ion quantum computing and photonic quantum networking hub, enabling commercial quantum services and smart grid optimization. Commercial access launches October 2026 with UTC and Vanderbilt as anchor clients.
IonQ's detailed resource estimate models a 19,397-ion quantum computer running Shor's algorithm against secp256k1 in ~26 days per attempt with 40-63% success probability at demonstrated error rates.
IonQ's Superion 256 replaces bulky laser systems with on-chip electronic control, reducing cost-per-qubit by 300x and enabling standard data center integration. Commercial deliveries targeted for 2027, advancing toward fault-tolerance.
Quantinuum receives $100M US government CHIPS Act funding to scale trapped-ion quantum computing manufacturing. Government investment accelerates development of fault-tolerant quantum systems for practical applications.