We demonstrated verifiable quantum advantage with Quantum Echoes. Running 13,000x faster than leading supercomputers, this represents a significant step toward real-world applications. Watch → goo.gle/48Gnbtl
Applications for GARA are closing this week on Aug 7. Submit your work now for Google's academic research awards, a global open call for groundbreaking foundational and applied research in quantum computing and technology. This cycle, Google is interested in proposals on early fault-tolerant quantum computing algorithms and applications, and quantum computing security. Apply at goo.gle/gara
Like an orchestra, quantum processors must stay perfectly in tune. Our research uses reinforcement learning to continuously correct system drift, akin to tuning the instruments while the music plays.
Read the blog: goo.gle/4puTTE9
Apply now for Google’s academic research awards, a global open call for proposals on groundbreaking foundational and applied research in computing and technology. This cycle, Google is interested in proposals on early fault tolerant quantum computing algorithms and applications, and quantum computing security.
Learn more and apply by August 7 at goo.gle/gara
ALT Graphic for the Google Academic Research Awards with text that reads: "Google Academic Research Awards. Submit your proposal by August 7, 2026." Features the Google Quantum AI logo at the top.
Published today in @Nature: We've unified calibration with computation on our Willow processor, training a reinforcement learning agent to stabilize the logical qubit and pave the way towards a quantum computer that continuously learns from its errors.
Read more: goo.gle/3T8N3rP
Studying particle diffusion in quantum systems is a major classical computing challenge. Our Willow processor was used to demonstrate disorder-free localization via a quantum algorithm which offers a polynomial speedup for disorder sampling.
Read more: goo.gle/4fdOn5k
ALT Promotional graphic with a background showing close-up details of a Willow microchip circuit. The graphic features a central square image of a 3D scientific visualization showing blue, purple, and green wave peaks. White text reads, "Observing disorder-free localization on the Willow quantum processor.”
Today's executive orders are an important step to help ensure continued US leadership in quantum computing. Google was honored to participate in today's signing ceremony, and we look forward to continued collaboration with the U.S. government.
whitehouse.gov/presidential-…
Last month, we hosted our annual Quantum Summer Symposium (QSS) at @DatalandMuseum, bringing together our partners, collaborators, and the broader quantum community. Watch the highlight reel to see a recap of the updates and discussions from the event: piped.video/-Uyx-3ii6V8
Today, Charina Chou joins Semafor Tech: First Principles to discuss how emerging technologies like quantum computing can transform research achievements into to practical impact. Watch here: goo.gle/4vAyfA9
ALT Event graphic for "Semafor Tech: First Principles" featuring Charina Chou, COO of Google Quantum AI. Wednesday, June 10th at 4pm PT.
In case you missed it: Hartmut Neven and James Manyika took the #GoogleIO stage to discuss the intersection of quantum computing and AI. If you couldn't make the session, watch the full recording to discover how these two technologies work together: goo.gle/3PC5Zhx
How are quantum computing & AI working together to accelerate discovery?
Tune in for Hartmut Neven & James Manyika’s discussion at #GoogleIO to explore how AI can build quantum hardware, while quantum unlocks new ways to train AI. io.google/2026/explore/pa-ke…
ALT A promotional graphic for Google I/O featuring headshots of James Manyika and Hartmut Neven. The text reads: "May 20th, 11am PT. Building the quantum-AI future with James Manyika and Hartmut Neven."
We’re launching REPLIQA: a $10M research initiative with @Googleorg and five leading universities to apply advanced quantum science and AI to the life sciences. Read more: goo.gle/432T7DW
Our team ran a verifiable quantum algorithm that probes how parts of a quantum system interact, from molecules to magnets and beyond. On our Willow chip, it ran 13,000× faster than the best classical supercomputers. A first in quantum computing → goo.gle/42z9E2d
How do quantum algorithms become real-world tools? This five-stage framework maps the progression from discovery to deployment, showing where applications demonstrate advantage, can be further optimized, and hold the greatest potential. Learn more → goo.gle/4exsT3s
Submit proposals for early access to the Willow quantum processor through the 2026 Willow Early Access Program before the May 15 deadline. Learn more → goo.gle/4sEyQzW
In honor of World Quantum Day, we’re heading onto our campus to answer the top trending questions people are searching for. Join Jenna and Andrew from our team as they break down the basics of quantum and what these systems could actually be used for → goo.gle/4mw6zJy
Happy World Quantum Day! Today’s #GoogleDoodle represents the potential of the qubit. We’re harnessing its unique quantum properties to build systems capable of solving problems that remain intractable for classical computers → goo.gle/4ckighH
Last month at the 2026 APS Global Physics Summit, two Google Quantum AI researchers were recognized as DQI Best Thesis finalists. Congratulations Nathan Lacroix (Winner) and Aniket Maiti (Finalist) on their work!