Artigo Acesso aberto Revisado por pares

Ballistic Spreading of Entanglement in a Diffusive Nonintegrable System

2013; American Physical Society; Volume: 111; Issue: 12 Linguagem: Inglês

10.1103/physrevlett.111.127205

ISSN

1092-0145

Autores

HyungWon Kim, David A. Huse,

Tópico(s)

Neural Networks and Reservoir Computing

Resumo

We study the time evolution of the entanglement entropy of a one-dimensional nonintegrable spin chain, starting from random nonentangled initial pure states. We use exact diagonalization of a nonintegrable quantum Ising chain with transverse and longitudinal fields to obtain the exact quantum dynamics. We show that the entanglement entropy increases linearly with time before finite-size saturation begins, demonstrating a ballistic spreading of the entanglement, while the energy transport in the same system is diffusive. Thus we explicitly demonstrate that the spreading of entanglement is much faster than the energy diffusion in this nonintegrable system.

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