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Control of the Evolution of Heisenberg Spin Systems

机译:海森堡自旋系统演化的控制

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In this paper, we give an algorithm for the control of the unitary evolution operator for the system of two spin (1/2)'s interacting through Heisenberg interaction. This algorithm allows for arbitrarily bounded control. The results extend previous ones that only concerned the control of a pure state. A Lie group decomposition technique is used to this goal and the problem is reduced to a two level problem with constraints. We also show how the control result allows to obtain information on the initial state through a series of evolutions and measurements. The study of the Heisenberg spin model is motivated by applications in electron paramagnetic resonance and in molecular magnetism. For these systems, the drift which models the interaction between the spins is typically large and cannot be neglected in the control design but it has to be used to reach the objective.
机译:在本文中,我们给出了通过Heisenberg相互作用的两个自旋(1/2)相互作用系统的统一演化算子的​​控制算法。该算法允许任意范围的控制。结果扩展了以前只涉及纯状态控制的结果。为此目的使用了李群分解技术,该问题被简化为具有约束的两级问题。我们还展示了控制结果如何通过一系列的演变和测量来获得有关初始状态的信息。海森堡自旋模型的研究受到电子顺磁共振和分子磁性的应用的推动。对于这些系统,模拟自旋之间相互作用的漂移通常很大,在控制设计中不能忽略,但必须使用它来达到目标​​。

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