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  • Hubbard 1D
    • Part 1: 1D Hubbard model
    • Part 2: Snake layout and fSWAP
    • Part 3: Qiskit and Fire Opal
    • Part 4: 120-qubit run
    • Part 5: Time-to-answer
    • Part 6: Tensor networks
    • Part 7: Majorana propagation
    • Part 8: Heatmaps
    • Part 9: 2D Hubbard outlook
    • Part 10: Quantum computer as a lab
    • Part 11: Official Monoprop benchmark
  • Hubbard 2D
    • Part 1: 1D to 2D
    • Part 2: Cuprates
    • Part 3: 3×3
    • Part 4: Time
    • Part 5: 4×4
    • Part 6: 6×6 Fez
  • Hadron
    • Part 1: Hadron on a quantum processor
    • Part 2: Quarks and confinement
    • Part 3: SU(2) and LSH
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    • Part 7: Quantum advantage
  • Black Hole OLE
    • Part 1: What we ran
    • Part 2: How OLE works
    • Part 3: Fire Opal and Kingston
    • Part 4: The tensor-network challenge
    • Part 5: Hawking and scrambling
    • Part 6: What the result proves
    • Part 7: Local toy model
    • Part 8: QGSS26 compatibility
  • Random Graph
    • Start here
    • Part 1: Theory
    • Part 2: Circuit
    • Part 3: Qiskit
    • Part 4: Complexity
    • Part 5: Verification
    • Part 6: Workflow
    • Part 7: Conclusion
  • QOS QML
    • Tutorial: UMI counts to a four-qubit circuit
    • Part 1: The QML task
    • Part 2: QOS theory
    • Part 3: Gene expression to 40 qubits
    • Part 4: JAX to hardware
    • Part 5: Readout and classifier
    • Part 6: 40-qubit result
    • Part 7: Route to quantum advantage
    • Part 8: 60-qubit result
  • Floquet-Ising
    • Part 1: Floquet physics
    • Part 2: Ising cycle
    • Part 3: Two-qubit toy model
    • Part 4: Oscillation and entanglement
    • Part 5: Noise and error mitigation
    • Part 6: Toward 51 qubits
  • GOLD REL
    • Part 1: Why gold is a relativistic quantum problem
    • Part 2: Why the 2025 gold VQE study stalled
    • Part 3: From QE and spin-orbit coupling to Qiskit
    • Part 4: Twelve gold spinor modes on four qubits
    • Part 5: The 24-qubit route: an active window for transport
    • Part 6: 24 qubits on IBM and with Fire Opal
    • Part 7: The road to quantum advantage for gold
  • Advantage List
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Illustration of a local pulse spreading and leaving a residual echo

Quantum computing news — August 10, 2026

Latest quantum computing news

Daily selection from Google News for August 10, 2026. Headlines link to the original publication.

Illustration of a spreading quantum pulse
Xanadu Accelerates Chip Production as Investors Await Next Catalyst in Race to Scalable Quantum Computing – Quarterly Update Report – Yahoo FinanceYahoo Finance · Sat, 08 Aug 2026 16:41:43 GMT
Quantum signal across several system sizes
This Trillion-Dollar AI Stock Offers Better Quantum Computing Exposure Than IonQ, Rigetti, or D-Wave at a Multi-Year Valuation Low – fool.comfool.com · Sun, 09 Aug 2026 10:05:00 GMT
Quantum phase-estimation circuit
Congress Eyes Boosting Quantum Funds as Global Race Heats Up – Bloomberg.comBloomberg.com · Fri, 07 Aug 2026 20:34:53 GMT
Visualization of a quantum spin state
Matt Kinsella (Infleqtion): Why Neutral Atoms Power Sensors, Clocks, and Computers Alike – The Quantum InsiderThe Quantum Insider · Sat, 08 Aug 2026 19:33:46 GMT
Diagnostic panels from a local quantum scrambling model
New 'shape-shifting' architecture brings versatility to photonic quantum computing – phys.orgphys.org · Fri, 07 Aug 2026 21:00:01 GMT
Charge-density measurement from a 120-qubit Fermi-Hubbard run
Quantinuum and Infleqtion Earnings Put Quantum IPOs in Focus – barrons.combarrons.com · Fri, 07 Aug 2026 07:00:00 GMT
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