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Neutral-Atom Quantum Computing Foundations

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.

Implemented

  • 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

Roadmap

  • 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

Note

This repository consolidates and updates related work for easier maintenance and reference.

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Physics-oriented quantum-computing models with emphasis on neutral atoms, Rydberg blockade, and atomic-platform intuition.

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