Architecting Fault-Tolerant Quantum Computers with Neutral Atoms: Reconfigurable Tweezer Arrays, Rydberg Blockade Dynamics, and Erasure Conversion
This technical deep dive explores fault-tolerant quantum computing with neutral-atom optical tweezer arrays, detailing Rydberg blockade dynamics, zone-based reconfigurable routing, and erasure error conversion. It features a fully functional Python simulation of open quantum system dynamics for a two-qubit Levine-Pichler CZ gate using non-Hermitian decay integration.