Have you already noticed IBM’s quantum leadership today?

IBM commits more than $10 Billion to Quantum computing, funding its roadmap from today's leading systems to the world's first fault-tolerant Quantum computers:
➑️ https://newsroom.ibm.com/2026-06-02-ibm-commits-more-than-10-billion-to-quantum-computing,-funding-its-roadmap-from-todays-leading-systems-to-the-worlds-first-fault-tolerant-quantum-computers

Arvind Krishna, Chairman & CEO, IBM: "The pace of discovery with quantum computers is accelerating rapidly and this investment powers our ability to deliver the next generation of quantum hardware, software, and manufacturing."

We’re building the future, together.
#Innovation
πŸ‘πŸβ“‚οΈ #IBM
#IBMQuantum #QuantumComputing
#IBMtechnology
#TechnologicalSuperiority
#InnovationLeader

IBM Commits More Than $10 Billion to Quantum Computing, Funding Its Roadmap from Today's Leading Systems to the World's First Fault-Tolerant Quantum Computers

The investment will span research and development, capital expenditure, manufacturing scaling, ecosystem partnerships, and M&A.

IBM Newsroom

Exactly 10 years ago, the first #IBM Quantum System came online, accessible to the community via the cloud. Nowadays there are two data centres (US & EU) with the most performant quantum computers in the world.

Try it out and run your first quantum circuit today for free: https://www.ibm.com/quantum/blog/open-plan-updates

#DecadeofQuantum #IBMQuantum #quantumcomputing #IQP #QuantumSystem

quantumslop/URANDOM_DEMO.md at 25ad2e76ae58baa96f6219742459407db9dd17f5 Β· yuvadm/quantumslop

Failed QDay prize challenge. Contribute to yuvadm/quantumslop development by creating an account on GitHub.

GitHub

#ParityQC just came out with the largest #QFT on an #IBM Quantum device. The QFT was basically an example of how their ParityQC architecture is able to push the limits on what we can do with our #NISQ devices today.

β†’ press release: https://parityqc.com/parityqc-set-new-record-benchmark-using-ibm-quantum-computer-with-the-largest-quantum-fourier-transform-ever-reported
β†’ pre-print: https://arxiv.org/abs/2604.12465

#quantumcomputing #IBMQuantum

I stress-tested Google’s new Colab MCP server with a real quantum workflow.

An AI agent took a blank Colab notebook and:
β€’ installed dependencies
β€’ fixed Qiskit compatibility issues
β€’ ran a 15-point H2 scan
β€’ submitted a real job to IBM Quantum hardware

This is where Colab gets interesting: not just notebook editing, but agent-operated cloud execution.

Article on @thepracticaldev
https://dev.to/axrisi/i-stress-tested-googles-colab-mcp-server-with-a-real-quantum-workflow-2oih

#AI #MCP #Colab #QuantumComputing #Qiskit #IBMQuantum #Python #CloudComputing

@gabor_samu Fascinating to see IBM Spectrum #LSF orchestrating classical HPC with #IBMQuantum
#QCD pipeline: HPC+SeeMPS preselections #BelleII noise moments β†’ info-rich slices to Heron/Qiskit for squeezing/superradiance sims.
https://github.com/JavierMartinAlonso1980/qcd-vortex-entanglement
LSF realistic hybrid orchestrator? Can this workload run on #Qiskit / #IBMQuantum Heron QPUs to test squeezing channels + entanglement dominance under noise?
Collider data β†’ #TensorNetworks β†’ IBM QPUs
https://doi.org/10.5281/zenodo.18672796
#QuantumComputing
GitHub - JavierMartinAlonso1980/qcd-vortex-entanglement: QCD Center Vortex Entanglement Analysis Framework

QCD Center Vortex Entanglement Analysis Framework. Contribute to JavierMartinAlonso1980/qcd-vortex-entanglement development by creating an account on GitHub.

GitHub

RE: https://mastodon.social/@jmma1980/115989420221925553

Step beyond toy models into a hybrid pipeline with real data. New repo: tensor-network prefiltering of #BelleII events (#SeeMPS, MPS/fermionic Gaussian states) selects entanglement‑relevant kinematics, then runs on #Qiskit / #IBMQuantum Heron to test squeezing channels and entanglement dominance under noise. From collider data β†’ #TensorNetworks β†’ IBM QPUs https://doi.org/10.5281/zenodo.18672796 https://github.com/JavierMartinAlonso1980/qcd-vortex-entanglement. #QCD #HighEnergyPhysics #QuantumEntanglement #SqueezedStates #MPS #BelleII #QuantumComputing

A molecule with half-MΓΆbius topology was first put together atom by atom, and then its properties were studied using a #QuantumComputer as an important scientific tool.

– IBM Research Blog Post: https://research.ibm.com/blog/half-mobius-molecule
– Paper: https://arxiv.org/abs/2507.03516 or https://www.science.org/doi/10.1126/science.aea3321

#quantumcomputing #IBMQuantum #IBM #UniversityManchester #UniversityOxford #EPFL @uni_regensburg @altbot

IBM Spectrum Symphony and Quantum Machine Learning: Bringing Quantum Computing to the Enterprise