Quantum Entanglement & Non-Locality

Fundamental Physics

How It Works

Quantum entanglement binds two or more particles into a non-separable composite quantum superposition state. Measuring a physical observable (such as spin orientation) on one entangled particle instantaneously projects the state of its distant partner, demonstrating quantum non-locality that violates classical local hidden-variable theories.

Governing Equation
|Ψ^+⟩ = 1 / √(2) · (|01⟩ + |10⟩) , ⟨ A ⊗ B ⟩ = -cos(θ_A - θ_B)