Quantum-state transfer with fidelity higher than 0.99 can be achieved in the ballistic regime of an arbitrarily long one-dimensional chain with uniform nearest-neighbor interaction, except for the two pairs of mirror-symmetric extremal bonds, say x (first and last) and y (second and penultimate). These have to be roughly tuned to suitable values x ~ 2N^{-1/3} and y ~ 2^{3/4}N^{-1/6}, where N is the chain length. The general framework can describe the end-to-end response in different models, such as fermion or boson hopping models and XX spin chains.
99%-fidelity ballistic quantum-state transfer through long uniform channels
T. J. G. Apollaro;R. Vaia;P. Verrucchi
2012
Abstract
Quantum-state transfer with fidelity higher than 0.99 can be achieved in the ballistic regime of an arbitrarily long one-dimensional chain with uniform nearest-neighbor interaction, except for the two pairs of mirror-symmetric extremal bonds, say x (first and last) and y (second and penultimate). These have to be roughly tuned to suitable values x ~ 2N^{-1/3} and y ~ 2^{3/4}N^{-1/6}, where N is the chain length. The general framework can describe the end-to-end response in different models, such as fermion or boson hopping models and XX spin chains.File in questo prodotto:
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