A physics-oriented quantum-computing project focused on two-level atomic dynamics and neutral-atom/Rydberg concepts.
The current implementation provides numerical building blocks for coherent Rabi dynamics, detuning, Rydberg interactions, and blockade estimates.
- generalized Rabi frequency for a driven two-level atom
- excited-state population under resonant/off-resonant driving
- van der Waals Rydberg interaction
V = C6 / R^6 - blockade-induced angular-frequency shift
- ideal blockade-radius estimate
- state-vector normalization helper
- unit tests and CI
- Bloch-sphere dynamics
- density matrices and decoherence
- single-qubit rotations from laser pulses
- two-atom Rydberg blockade dynamics
- controlled-phase gate models
- simple neutral-atom register geometry
- gate fidelity versus detuning, interaction strength, and decoherence
- links to cold-atom trapping and atom-array parameters
This repository consolidates and updates related work for easier maintenance and reference.