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Asymptotically perfect efficient quantum state transfer across uniform chains with two impurities

Quantum Gases 2016-01-28 v1 Quantum Physics

Abstract

The ability to transfer quantum information from one location to another with high fidelity is of central importance to quantum information science. Unfortunately for the simplest system of a uniform chain (a spin chain or a particle in a one-dimensional lattice), the state transfer time grows exponentially in the chain length NN at fixed fidelity. In this work we show that the addition of an impurity near each endpoint, coupled to the uniform chain with strength ww, is sufficient to ensure efficient and high-fidelity state transfer. An eigenstate localized in the vicinity of the impurity can be tuned into resonance with chain extended states by tuning w(N)N1/2w(N)\propto N^{1/2}; the resulting avoided crossing yields resonant eigenstates with large amplitudes on the chain endpoints and approximately equidistant eigenvalues. The state transfer time scales as tN3/2t\propto N^{3/2} and its fidelity FF approaches unity in the thermodynamic limit NN\to\infty; the error scales as 1FN11-F\propto N^{-1}. Thus, with the addition of two impurities, asymptotically perfect state transfer with a uniform chain is possible even in the absence of external control.

Keywords

Cite

@article{arxiv.1511.00038,
  title  = {Asymptotically perfect efficient quantum state transfer across uniform chains with two impurities},
  author = {Xining Chen and Robert Mereau and David L. Feder},
  journal= {arXiv preprint arXiv:1511.00038},
  year   = {2016}
}

Comments

10 pages, 7 figures

R2 v1 2026-06-22T11:33:33.415Z