| name | Quantum Entanglement |
| description | Advanced theoretical frameworks of quantum entanglement, Bell States, and Quantum Teleportation protocols. |
Entanglement Protocols and Non-Locality
Entanglement is the quintessential quantum resource, violating Bell inequalities and enabling correlations unattainable by local hidden variables.
- Bell States: The four maximally entangled two-qubit basis states, generated by applying $H$ on the control and $CNOT$ on the target. E.g., $|\Phi^+\rangle = \frac{1}{\sqrt{2}}(|00\rangle + |11\rangle)$.
- Quantum Teleportation: A protocol transferring unknown quantum information $|\psi\rangle$ between distant nodes utilizing a pre-shared Bell pair and classical communication (CC).
- Alice entangles her unknown qubit with her half of the Bell pair.
- Alice performs a Bell-basis measurement, collapsing the state and yielding two classical bits.
- Alice transmits the two bits via CC.
- Bob applies conditional Pauli operations ($I, X, Z, XZ$) to his half of the pair, perfectly reconstructing $|\psi\rangle$.
flowchart TD
Start[Unknown State & Shared EPR Pair] --> A[Alice's Local Operations]
A --> B[Bell-Basis Measurement]
B --> C[Collapse to 4 Possible Outcomes]
C --> D[Classical Communication of 2 Bits]
D --> E[Bob's Conditional Operations]
E --> F[Apply Pauli Correction]
F --> G[Reconstruct Unknown State]