The demands of fault tolerance are bringing Quantinuum’s advantages into sharper focus. A new independent study from the Jülich Supercomputing Centre (JSC) found that Quantinuum's Helios system achieved approximately 10× lower effective hardware error than superconducting systems when evaluating fault-0tolerant operations. This work builds on earlier independent research from Jülich that found Quantinuum’s systems led in physical-level performance. Now, that advantage is extending into the operations that will underpin fault-tolerant computation. As we approach large-scale fault tolerance, the gap between quantum computing architectures is becoming increasingly clear. This study provides further independent evidence that Quantinuum is building the architecture needed to meet that challenge and continuing to raise the performance bar. Read our blog: 📷 ↧ Independent Study Shows Quantinuum Outperforming Superconducting Sy... In a new independent study from the Jülich Supercomputing Centre, Quantinuum’s Helios demonstrated an approximately order-of-magnitude advantage over superconducting hardware in tests of operations essential to quantum error correction. More precisely, Helios’ effective hardware error was approximately 13 times lower at 30 data qubits and e...