Long-range quantum energy teleportation and distribution on a hyperbolic quantum network
arXiv:2301.11884 · doi:10.1049/qtc2.12090
Abstract
Teleporting energy to remote locations is new challenge for quantum information science and technology. Developing a method for transferring local energy in laboratory systems to remote locations will enable non-trivial energy flows in quantum networks. From the perspective of quantum information engineering, we propose a method for distributing local energy to a large number of remote nodes using hyperbolic geometry. Hyperbolic networks are suitable for energy allocation in large quantum networks since the number of nodes grows exponentially. To realise long-range quantum energy teleportation, we propose a hybrid method of quantum state telepotation and quantum energy teleportation. By transmitting local quantum information through quantum teleportation and performing conditional operations on that information, quantum energy teleportation can theoretically be realized independent of geographical distance. The method we present will provide new insights into new applications of future large-scale quantum networks and potential applications of quantum physics to information engineering.
References in corpus (18)
- The Quantum Internet
- Hyperbolic Geometry of Complex Networks
- Realization of a multi-node quantum network of remote solid-state qubits
- Crystallography of Hyperbolic Lattices
- Quantum Measurement Information as a key to Energy Release from Local Vacuums
- Hyperbolic band theory
- Automorphic Bloch theorems for hyperbolic lattices
- Quantum Energy Teleportation in Spin Chain Systems
- A Protocol for Quantum Energy Distribution
- Theory of Quantum Games and Quantum Economic Behavior
- Demonstration of Quantum Energy Teleportation on Superconducting Quantum Hardware
- Selberg trace formula in hyperbolic band theory
- Criticality of quantum energy teleportation at phase transition points in quantum field theory
- Hyperbolic band theory through Higgs bundles
- Investigating global and topological order of states by local measurement and classical communication: Study on SPT phase diagrams by quantum energy teleportation
- Quantum Protocol for Decision Making and Verifying Truthfulness among -quantum Parties: Solution and Extension of the Quantum Coin Flipping Game
- Quantum Extensive Form Games
- Algebra of Hyperbolic Band Theory under Magnetic Field
Cited by in corpus (8)
- Investigating global and topological order of states by local measurement and classical communication: Study on SPT phase diagrams by quantum energy teleportation
- Quantum interactive proofs using quantum energy teleportation
- Exceeding the maximum classical energy density in fully charged quantum batteries
- Beyond Energy: Teleporting Current, Charge, and More
- Robustness of quantum correlation in quantum energy teleportation
- Quantum Key Distribution by Quantum Energy Teleportation
- Strong Local Passivity in Unconventional Scenarios: A New Protocol for Amplified Quantum Energy Teleportation
- Quantum Energy Teleportation under Equilibrium and Nonequilibrium Environments