Quantum-state transfer in spin chains via isolated resonance of terminal spins
arXiv:1403.7359 · doi:10.1103/PhysRevA.89.062301
Abstract
We propose a quantum-state transfer protocol in a spin chain that requires only the control of the spins at the ends of the quantum wire. The protocol is to a large extent insensitive to inhomogeneity caused by local magnetic fields and perturbation of exchange couplings. Moreover, apart from the free evolution regime, it allows one to induce an adiabatic spin transfer, which provides the possibility of performing the transfer on demand. We also show that the amount of information leaking into the central part of the chain is small throughout the whole transfer process (which protects the information sent from being eavesdropped) and can be controlled by the magnitude of the external magnetic field.
7 pages, 5 figures. Published version
References in corpus (16)
- Quantum Communication through Spin Chain Dynamics: an Introductory Overview
- Mirror Inversion of Quantum States in Linear Registers
- The Propagation of Quantum Information Through a Spin System
- Perfect state transfer on a spin-chain without state initialization
- Long-distance entanglement and quantum teleportation in XX spin chains
- Electron wavepacket propagation and entanglement in a chain of coupled quantum dots
- Communication at the quantum speed limit along a spin chain
- Improved transfer of quantum information using a local memory
- Optimal quantum chain communication by end gates
- Efficient quantum state transfer in spin chains via adiabatic passage
- High-dimensional quantum state transfer through a quantum spin chain
- Fast, high fidelity information transmission through spin chain quantum wires
- Local control of entanglement in a spin chain
- Adiabatic Quantum Transport in a Spin Chain with a Moving Potential
- Effect of perturbations on information transfer in spin chains
- Heisenberg chains cannot mirror a state
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