Science with QuEra: Experimental Demonstration of Logical Magic State Distillation
August 6, 2025
11 AM EST




August 6, 2025
11 AM EST





Join top QuEra scientists Sergio Cantu, Harry Zhou, and John Robinson as they present their groundbreaking experimental demonstration of logical magic state distillation, a critical step toward universal, fault-tolerant quantum computing.
This webinar dives into the innovative capabilities of QuEra’s neutral-atom quantum computers, highlighting their unique advantages including scalability, all-to-all connectivity, long coherence times, and room-temperature operation. Learn how these features enable the encoding of qubits into logical states, efficient quantum error correction, and the successful distillation of high-fidelity magic states.
Explore the detailed process from encoding physical qubits to logical qubits, optimizing circuits for maximum fidelity, and leveraging advanced decoding strategies to achieve error suppression. The team shares behind-the-scenes insights into the experimental challenges and the meticulous optimization required for achieving this significant quantum milestone.
Discover how magic state distillation brings quantum computing closer to practical applications in cryptography, materials science, and more. Don’t miss this in-depth look at the future of quantum computing technology and QuEra’s pioneering role in the field.
Visit QuEra.com to learn more and explore collaboration opportunities for advancing your quantum innovation journey.




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Join top QuEra scientists Sergio Cantu, Harry Zhou, and John Robinson as they present their groundbreaking experimental demonstration of logical magic state distillation, a critical step toward universal, fault-tolerant quantum computing.
This webinar dives into the innovative capabilities of QuEra’s neutral-atom quantum computers, highlighting their unique advantages including scalability, all-to-all connectivity, long coherence times, and room-temperature operation. Learn how these features enable the encoding of qubits into logical states, efficient quantum error correction, and the successful distillation of high-fidelity magic states.
Explore the detailed process from encoding physical qubits to logical qubits, optimizing circuits for maximum fidelity, and leveraging advanced decoding strategies to achieve error suppression. The team shares behind-the-scenes insights into the experimental challenges and the meticulous optimization required for achieving this significant quantum milestone.
Discover how magic state distillation brings quantum computing closer to practical applications in cryptography, materials science, and more. Don’t miss this in-depth look at the future of quantum computing technology and QuEra’s pioneering role in the field.
Visit QuEra.com to learn more and explore collaboration opportunities for advancing your quantum innovation journey.
See you soon!