In fault-tolerant quantum computing, raw qubit counts only tell half the story. Operational speed matters just as much. And that efficiency has a dollar value. A major challenge with high-rate qLDPC error correction has been operational latency during logical gate execution. If a machine spends too much time on error correction cycles, execution slows to a crawl—eroding the practical value for enterprise workloads. Our team, Mark Webster and @​nic delfosse, has demonstrated a new hybrid physical/logical execution strategy—which performs error correction cycles in parallel with gate execution rather than idling the system—slashing these delays and achieving up to a 74x speedup on logical Clifford operations and up to 5x on Toffoli gates (the key primitives required for algorithms where quantum advantage is expected). What does this mean for commercial and government leaders assessing quantum systems? 🔸 Faster timelines to quantum advantage: Essential algorithms in material science, financial modeling, and logistics become practical sooner than previously anticipated. 🔸 Higher value per machine: Accelerated logical gates translate directly to higher shot output per unit of runtime—maximizing the computational ROI. 🔸 Shift to next-gen metrics: Enterprise relevance isn't just about physical qubit counts. Metrics like logical execution rate and quantum error correction scheduling efficiency will define commercial leadership. Read the blog → Read the paper → #IonQ #QuantumIsNow #WalkingCat #QEC #qLDPC #QuantumComputing 📷 ↧ ↧ LinkedIn This link will take you to a page that’s not on LinkedIn LinkedIn This link will take you to a page that’s not on LinkedIn