Troppmann Ulrike, de Vivie-Riedle Regina
Department Chemie, Ludwig-Maximilians-Universität München, Butenandt-Strasse 11, München D 81277, Germany.
J Chem Phys. 2005 Apr 15;122(15):154105. doi: 10.1063/1.1881112.
We explore how the globality of quantum logic operations is ensured in the context of optimal control theory when qubits are encoded in vibrational eigenstates of different normal modes and specially shaped laser fields act as quantum logic operations. In a two-qubit model system, transition mechanisms for optimized laser fields generating single qubit flips, local NOT and global NOT and controlled-NOT (CNOT) gates are investigated and compared. We evaluate the participation of vibrational eigenstates beyond the qubit basis in the global gate mechanisms and how different features of CNOT and NOT gates relate to the characteristics of the vibrational manifold. When a non-qubit normal mode interacting via anharmonic resonances is introduced, neither the global gate mechanisms nor the optimized laser fields show a significant increase in complexity. Similar features of the global quantum gates in both model systems indicate a generality of the deduced principles. Finally, a primary concept for a realization of global quantum gates in an actual experiment referring to state-of-the-art techniques is presented. The possible reconstruction of optimized laser fields with sequences of simple Gaussian subpulses is demonstrated and some critical parameters are deduced.
我们探讨了在最优控制理论的背景下,当量子比特编码在不同简正模式的振动本征态中且特殊形状的激光场用作量子逻辑运算时,如何确保量子逻辑运算的全局性。在一个双量子比特模型系统中,研究并比较了用于生成单量子比特翻转、局部非门和全局非门以及受控非门(CNOT门)的优化激光场的跃迁机制。我们评估了超出量子比特基的振动本征态在全局门机制中的参与情况,以及CNOT门和非门的不同特征如何与振动流形的特性相关。当引入通过非谐共振相互作用的非量子比特简正模式时,全局门机制和优化激光场的复杂性均未显著增加。两个模型系统中全局量子门的相似特征表明了所推导原理的普遍性。最后,提出了一个基于最新技术在实际实验中实现全局量子门的主要概念。展示了用简单高斯子脉冲序列对优化激光场进行可能的重构,并推导了一些关键参数。