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Unconventional geometric quantum computation in a two-mode cavity
Journal article

Unconventional geometric quantum computation in a two-mode cavity

Chunfeng Wu, Zisheng Wang, Xun-Li Feng, Hsi-Sheng Goan, L. C. Kwek, C. H. Lai and C. H. Oh
Physical review. A, Atomic, molecular, and optical physics, Vol.76(2), 024302
01/08/2007

Abstract

Optics Physical Sciences Physics Physics, Atomic, Molecular & Chemical Science & Technology
We propose a scheme for implementing unconventional geometric quantum computation by using the interaction of two atoms with a two-mode cavity field. The evolution of the system results in a nontrivial two-qubit phase gate. The operation of the proposed gate involves only metastable states of the atom and hence is not affected by spontaneous emission. The effect of cavity decay on the gate is investigated. It is shown that the evolution time of the gate in the two-mode case is less than that in the single-mode case proposed by Feng [Phys. Rev. A 75, 052312 (2007)]. Thus the gate can be more decay tolerant than the previous one. The scheme can also be generalized to a system consisting of two atoms interacting with an N-mode cavity field.

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