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Scheme for unconventional geometric quantum computation in cavity QED

机译:腔QED中非常规几何量子计算的方案

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In this paper, we present a scheme for implementing the unconventional geometric two-qubit phase gate with nonzero dynamical phase based on two-channel Raman interaction of two atoms in a cavity. We show that the dynamical phase and the total phase for a cyclic evolution are proportional to the geometric phase in the same cyclic evolution; hence they possess the same geometric features as does the geometric phase. In our scheme, the atomic excited state is adiabatically eliminated, and the operation of the proposed logic gate involves only the metastable states of the atoms; thus the effect of the atomic spontaneous emission can be neglected. The influence of the cavity decay on our scheme is examined. It is found that the relations regarding the dynamical phase, the total phase, and the geometric phase in the ideal situation are still valid in the case of weak cavity decay. Feasibility and the effect of the phase fluctuations of the driving laser fields are also discussed.
机译:在本文中,我们提出了一种基于腔体中两个原子的两通道拉曼相互作用实现具有非零动态相位的非常规几何两比特相位门的方案。我们表明,在同一循环演化中,一个循环演化的动力学相位和总相位与几何相位成正比。因此它们具有与几何相位相同的几何特征。在我们的方案中,绝热消除了原子激发态,并且所提出的逻辑门的操作仅涉及原子的亚稳态。因此可以忽略原子自发发射的影响。研究了腔衰变对我们方案的影响。发现在弱腔衰变的情况下,理想状态下有关动力相位,总相位和几何相位的关系仍然有效。还讨论了驱动激光场相位波动的可行性和影响。

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