Nonadiabatic geometric quantum computation with trapped ions

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Abstract

We propose a nonadiabatic scheme for geometric quantum computation with trapped ions. By making use of the Aharonov-Anandan phase, the proposed scheme not only preserves the globally geometric nature in quantum computation, but also provides the advantage of nonadiabaticity that overcomes the problem of slow evolution in the existing adiabatic schemes. Moreover, the present scheme requires only two atomic levels in each ion, making it an appealing candidate for quantum computation. © 2002 The American Physical Society.

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Li, X. Q., Cen, L. X., Huang, G., Ma, L., & Yan, Y. J. (2002). Nonadiabatic geometric quantum computation with trapped ions. Physical Review A - Atomic, Molecular, and Optical Physics, 66(4), 5. https://doi.org/10.1103/PhysRevA.66.042320

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