English

Quantum map approach to entanglement transfer and generation in spin chains

Quantum Physics 2021-12-17 v3

Abstract

Quantum information processing protocols are efficiently implemented on spin-12\frac{1}{2} networks. A quantum communication protocol generally involves a certain number of parties having local access to a subset of a larger system, whose intrinsic dynamics are exploited in order to perform a specific task. In this chapter, we address such a scenario with the quantum dynamical map formalism, where the dynamics of the larger system is expressed as a quantum map acting on the parties' access to their respective subsets of spins. We reformulate widely investigated protocols, such as one-qubit quantum state transfer and two-qubit entanglement distribution, with the quantum map formalism and demonstrate its usefulness in exploring less investigated protocols such as multi-qubit entanglement generation.

Keywords

Cite

@article{arxiv.2112.02348,
  title  = {Quantum map approach to entanglement transfer and generation in spin chains},
  author = {S. Lorenzo and F. Plastina and M. Consiglio and T. J. G. Apollaro},
  journal= {arXiv preprint arXiv:2112.02348},
  year   = {2021}
}

Comments

20 pages, 8 figures, Contributed chapter in the Springer volume on "Entanglement in Spin Chains: Theory and Quantum Technology Applications"