English

Perfect State Transfer, Effective Gates and Entanglement Generation in Engineered Bosonic and Fermionic Networks

Quantum Physics 2009-11-10 v2

Abstract

We show how to achieve perfect quantum state transfer and construct effective two-qubit gates between distant sites in engineered bosonic and fermionic networks. The Hamiltonian for the system can be determined by choosing an eigenvalue spectrum satisfying a certain condition, which is shown to be both sufficient and necessary in mirror-symmetrical networks. The natures of the effective two-qubit gates depend on the exchange symmetry for fermions and bosons. For fermionic networks, the gates are entangling (and thus universal for quantum computation). For bosonic networks, though the gates are not entangling, they allow two-way simultaneous communications. Protocols of entanglement generation in both bosonic and fermionic engineered networks are discussed.

Keywords

Cite

@article{arxiv.quant-ph/0407212,
  title  = {Perfect State Transfer, Effective Gates and Entanglement Generation in Engineered Bosonic and Fermionic Networks},
  author = {Man-Hong Yung and Sougato Bose},
  journal= {arXiv preprint arXiv:quant-ph/0407212},
  year   = {2009}
}

Comments

RevTeX4, 6 pages, 1 figure; replaced with a more general example and clarified the sufficient and necessary condition for perfect state transfer

R2 v1 2026-07-22T19:45:18.429Z