Quantum Key Distribution by Quantum Energy Teleportation
arXiv:2506.02054 · doi:10.1103/7s7y-7xcn
Abstract
Quantum energy teleportation (QET) is a process that leverages quantum entanglement and local operations to transfer energy between two spatially separated locations without physically transporting particles or energy carriers. We construct a QET-based quantum key distribution (QKD) protocol and analyze its security and robustness to noise in both the classical and the quantum channels. We generalize the construction to an -party information sharing protocol, possessing a feature that dishonest participants can be detected.
20 pages, 9 figures
References in corpus (18)
- Quantum Cryptography
- Quantum cryptography: Public key distribution and coin tossing
- The Security of Practical Quantum Key Distribution
- Simple Proof of Security of the BB84 Quantum Key Distribution Protocol
- Distillation of secret key and entanglement from quantum states
- Practical aspects of measurement-device-independent quantum key distribution
- A Protocol for Quantum Energy Distribution
- Experimental Activation of Strong Local Passive States with Quantum Information
- Demonstration of Quantum Energy Teleportation on Superconducting Quantum Hardware
- Criticality of quantum energy teleportation at phase transition points in quantum field theory
- Investigating global and topological order of states by local measurement and classical communication: Study on SPT phase diagrams by quantum energy teleportation
- Long-range quantum energy teleportation and distribution on a hyperbolic quantum network
- Secure quantum key distribution with a subset of malicious devices
- Quantum interactive proofs using quantum energy teleportation
- New Vacuum of Bethe Ansatz Solutions in Thirring Model
- Exceeding the maximum classical energy density in fully charged quantum batteries
- Robustness of quantum correlation in quantum energy teleportation
- Beyond Energy: Teleporting Current, Charge, and More