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纯态和混合态下量子逻辑门的操作。

The operations of quantum logic gates with pure and mixed initial states.

机构信息

Department of Mechanical Engineering, WuFeng University, Minhsiung, Chiayi, Taiwan.

出版信息

J Chem Phys. 2011 Apr 7;134(13):134103. doi: 10.1063/1.3571597.

Abstract

The implementations of quantum logic gates realized by the rovibrational states of a C(12)O(16) molecule in the X((1)Σ(+)) electronic ground state are investigated. Optimal laser fields are obtained by using the modified multitarget optimal theory (MTOCT) which combines the maxima of the cost functional and the fidelity for state and quantum process. The projection operator technique together with modified MTOCT is used to get optimal laser fields. If initial states of the quantum gate are pure states, states at target time approach well to ideal target states. However, if the initial states are mixed states, the target states do not approach well to ideal ones. The process fidelity is introduced to investigate the reliability of the quantum gate operation driven by the optimal laser field. We found that the quantum gates operate reliably whether the initial states are pure or mixed.

摘要

研究了在 X((1)Σ(+))电子基态下 C(12)O(16)分子的振转态实现的量子逻辑门。通过使用结合了代价函数最大值和态与量子过程保真度的改进多目标最优理论(MTOCT),得到了最优激光场。使用投影算子技术和改进的 MTOCT 来获得最优激光场。如果量子门的初始态是纯态,那么在目标时间的态会很好地接近理想的目标态。然而,如果初始态是混合态,那么目标态不会很好地接近理想态。过程保真度被引入来研究由最优激光场驱动的量子门操作的可靠性。我们发现,无论初始态是纯态还是混合态,量子门的操作都是可靠的。

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