Quantum teleportation by utilizing helical spin chains for sharing entanglement
arXiv:2011.03873 · doi:10.1007/s11128-020-02971-4
Abstract
We develop a new protocol for sharing entanglement (one ebit) between two parties using the natural dynamics of helical multiferroic spin chains. We introduce a novel kicking scheme of the electric field for enhancing the teleportation fidelity in our protocol that works in the presence of an appropriate choice of parameters. We also investigate the effect of a common spin environment causing decoherence in the entanglement sharing channel. We compare the results to that of XXZ and XX models subject to a similar entanglement sharing protocol and find that the helical multiferroic chain with the kicking scheme provides a better singlet fraction. We show that the kicking scheme in conjugation with the optimized parameters enhances the fidelity of teleportation even in the presence of impurities and/or decoherence. The advantage of the kicking scheme shown in the impurity cases is an important result to be useful in a realizable setup of helical multiferroic spin chain.
Accepted for publication in Quantum Information Processing
References in corpus (16)
- Spin current and magneto-electric effect in non-collinear magnets
- Perfect Transfer of Arbitrary States in Quantum Spin Networks
- Mirror Inversion of Quantum States in Linear Registers
- Long-distance entanglement in spin systems
- Long-distance entanglement and quantum teleportation in XX spin chains
- Qubit Teleportation and Transfer across Antiferromagnetic Spin Chains
- Switching the Ferroelectric Polarization by External Magnetic Fields in the Spin = 1/2 Chain Cuprate LiCuVO4
- 99%-fidelity ballistic quantum-state transfer through long uniform channels
- Entanglement Routers Using Macroscopic Singlets
- Decoherence effects on the quantum spin channels
- Long-distance entanglement and quantum teleportation in coupled cavity arrays
- Superadiabatic quantum heat engine with a multiferroic working medium
- Entanglement and dynamics of spin-chains in periodically-pulsed magnetic fields: accelerator modes
- Pulse and quench induced dynamical phase transition in a chiral multiferroic spin chain
- Qubit(s) transfer in helical spin chains
- Quantum teleportation with continuous measurements