| name | quantum-path-superposition-teleportation |
| description | Path-superposition framework for quantum gate teleportation enabling superposed path operations for advanced quantum information transfer protocols. |
| version | 1.0.0 |
| author | Hermes Agent |
| license | MIT |
| metadata | {"hermes":{"tags":["quantum","teleportation","gate-teleportation","path-superposition","quantum-information"]}} |
| created | 2026-07-07T00:00:00.000Z |
| trigger_words | ["quantum teleportation","gate teleportation","path superposition","quantum information transfer","quantum protocol"] |
Quantum Path-Superposition Gate Teleportation
Overview
Methodology from arXiv:2607.04672 — "A Path-Superposition Framework for Quantum Gate Teleportation" (Ávila & Enríquez, July 2026).
Core Methodology
Problem: Standard quantum gate teleportation requires sequential path operations, limiting throughput and increasing decoherence exposure.
Solution: Path-superposition framework — apply gate operations on superposed paths simultaneously:
- Prepare: Create entangled resource state spanning multiple teleportation paths
- Superpose: Encode gate operation across all paths in quantum superposition
- Measure: Perform Bell-state measurement to teleport both state and gate
- Correct: Apply path-dependent Pauli corrections based on measurement outcomes
Key Steps
- Construct multi-path entangled resource state
- Apply target gate in superposition across paths
- Perform joint Bell measurement
- Decode classical outcomes to determine correction operators
- Apply corrections to recover teleported state with gate applied
Pitfalls
- Resource state quality degrades exponentially with path count
- Requires high-fidelity Bell-state measurement
- Correction operators become non-local for complex gates
Activation
Use when designing quantum teleportation protocols, implementing distributed quantum gates, or optimizing quantum network communication.