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#FaultTolerantQuantumComputing

3 lectures with this tag

83 | Building the FTQC Stack: Architectural Principles for Performance and Scalability in Fault-Tolerant Quantum Computing

83 | Building the FTQC Stack: Architectural Principles for Performance and Scalability in Fault-Tolerant Quantum Computing

This talk presents systems-level architectural principles and compiler techniques for improving cycle time, reducing cycles per gate, and lowering gate count in scalable fault-tolerant quantum computing.

81 | Magic Gate Teleportation: Structure, Useful Resource States, and Simpler Feedforward

81 | Magic Gate Teleportation: Structure, Useful Resource States, and Simpler Feedforward

This talk develops a theory of magic gate teleportation, revealing structural properties that identify useful resource states for non-Clifford gates and simplify the feedforward operations required for fault-tolerant computation.

80 | Building Efficient Fault-Tolerant Quantum Circuits: From Resource Optimization to Scalable Compilation

80 | Building Efficient Fault-Tolerant Quantum Circuits: From Resource Optimization to Scalable Compilation

This talk presents techniques for reducing T-gate counts, Clifford gate counts, and compilation costs, together with a scalable framework for efficiently compiling large fault-tolerant quantum circuits.