.@IBM reveals latest quantum processors—IBM Quantum Loon and IBM Quantum Nighthawk—and all future chips on our quantum development roadmap are being fabricated at the Albany NanoTech Complex (@CNSE) using 300mm semiconductor wafer technology: https://t.co/45p1ZwcMib
#QDC25
Quantum is taking a major step forward. ⚛️
IBM announced that they are investing $10 billion USD in quantum computing over the next five years, spanning R&D, capital expenditure, manufacturing scale, ecosystem partnerships, and M&A. The goal is to accelerate IBM’s quantum roadmap and strengthen quantum leadership anchored in the United States.
Discover more here → https://t.co/hv6TifsjpT
In the second Build-n-Brew session of #BOSTechWeek, students and builders alike are participating in a live workshop at @MITIBMLab with Docling, an open-source processing framework that converts messy, unstructured PDFs and other documents into clean, AI-friendly data.
Quantum startup @ParityQC demonstrates 52‑qubit quantum Fourier transform on IBM Heron processor, the largest to date: https://t.co/KUzbTxhp2b
New “Parity Twine” method achieves record-setting performance by rethinking how quantum information is represented and propagated.
@MIT@ETH_en At @UofIllinois, the IBM-Illinois Discovery Accelerator Institute is shaping what’s next across quantum-centric supercomputing, next-gen AI, and novel algorithms. 🧠
Together, we’re building the future of computing. Learn more: https://t.co/8rN1nDYeNC
What does it take to define the future of computing? At IBM Research, the answer is simple: partnership. 🤝
We’re working alongside leading science universities to tackle the hardest challenges in AI, quantum, and beyond together.
@MIT With @ETH_en, we’re building the algorithmic foundations of the future. ⚡️
This long-standing partnership focuses on developing new algorithms that bring classical, AI, and quantum systems together -- and simulate the natural world in entirely new ways.
With support from @CommerceGov, @IBM is announcing its plans for Anderon, America’s first quantum foundry that will accelerate American quantum leadership and enable advanced quantum wafer manufacturing.
This initiative marks one of the most significant commitments from the U.S. government in quantum R&D to date, and is poised to fuel American economic growth and quantum innovation. Learn more here: https://t.co/h0lMyV5kiw
IBM celebrates the 10-year anniversary of quantum computing on the cloud, helping democratize quantum research and spark a global community, profession, and industry: https://t.co/nHi77CjAVY
Largest protein simulation yet on a quantum computer. 🚀
Explore how @ClevelandClinic, @riken_en & IBM modeled 12,635 protein complex with new algorithm and quantum‑centric workflow:
https://t.co/uUAIwCYiyr
What if your language model could reason efficiently in an entirely new language?
We introduce Abstract Chain-of-Thought, a new mechanism which allows language models to reason through a short sequence of reserved "abstract" tokens through reinforcement learning. It is as performant as verbalized CoT at a fraction of the cost, achieving major gains in inference-time efficiency.
Classical computers crunch numbers. 🔢
Quantum computers mimic the universe. ⚛️
Celebrate World Quantum Day with us by learning how the shift to qubits is unlocking the future of medicine, chemistry, and AI: https://t.co/irWRwOv6Bh
Quantum simulation is moving into real‑materials territory.
A multi‑institution team used IBM quantum hardware to model magnetic materials such as KCuF₃ with high accuracy — a concrete step toward quantum‑enabled materials science.
Read more: https://t.co/lB3oqb4bp4
Advancing molecular discovery with quantum computing. 🧬
Together with prominent academic partners, @IBMResearch used quantum computing to validate the world’s first molecule possessing a half‑Möbius electronic topology. Learn more here → https://t.co/ykhSakIMPs
Researchers from the Basque Quantum Initiative, @NIST, and @IBM create one of the largest, most sophisticated demonstrations of a time crystal on an IBM Quantum Heron processor: https://t.co/brqsawRx7g
Full paper published in @Nature Communication here: https://t.co/RWv7UzEPL3
Momentum is building for quantum-centric supercomputing.
Results from our partners at @ORNL, @AMD, @RIKEN_en, @AlgorithmiqHQ, and the quantum community are showing how GPUs + QPUs can accelerate workflows and boost the fidelity of quantum computations: https://t.co/RTzFFFmlFb
Researchers from @IBM present the first quantum algorithm capable of efficiently simulating stochastic differential equations, making it the first such algorithm able to simulate chaotic, non‑linear systems — something classical computers struggle with: https://t.co/YJVVFaAXy3