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January 29, 2001CERN Bulletin2,002 citationsOpen Access

Persistent Entanglement in Arrays of Interacting Particles

HBHans J. BriegelRRRobert Raussendorf

Key Points

  • The aim is to explore the entanglement properties of N-qubit states generated in qubit arrays with Ising interactions.
  • Analyzed N-qubit quantum states with Ising-type interactions
  • Evaluated entanglement using Schmidt measure
  • Assessed the measurement requirements for disentangling states
  • States exhibit a significant amount of entanglement as indicated by their Schmidt measure
  • Approximately N/2 qubits must be measured to disentangle the state
  • These states can serve as resources to create other multiparticle entangled states through measurements and communication

Abstract

We study the entanglement properties of a class of N-qubit quantum states that are generated in arrays of qubits with an Ising-type interaction. These states contain a large amount of entanglement as given by their Schmidt measure. They also have a high persistency of entanglement which means that approximately N/2 qubits have to be measured to disentangle the state. These states can be regarded as an entanglement resource since one can generate a family of other multiparticle entangled states such as the generalized Greenberger-Horne-Zeilinger states of <N/2 qubits by simple measurements and classical communication.

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Cite This Study

Briegel et al. (2001) studied this question.

synapsesocial.com/papers/69d7eb7311d83f35e5ae3365https://doi.org/10.1103/physrevlett.86.910
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