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Towards a minimum L~2-norm exact control of the Pauli equation

机译:朝着保利方程的最小L〜2 - 规范精确控制

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A computational framework for the exact-control of the magnetic state and the spin of an electron is presented. The evolution of this quantum system is governed by the Pauli equation, that is a system of Schrodinger equations coupled by the action of magnetic fields. The magnetic fields are used as controls in order to steer the quantum system from an initial state to a desired target state at a given final time. This control framework is based on a minimum norm optimization formulation of exact-controllability quantum problems, that allows the application of efficient Krylov-Newton optimization techniques. In order to provide this framework with an adequate initialization, a continuation procedure is discussed. Results of numerical experiments demonstrate the effectiveness of the proposed framework.
机译:呈现了用于精确控制磁状态和电子旋转的计算框架。该量子系统的演变由Pauli方程管辖,即由磁场的动作耦合的Schrodinger方程的系统。磁场用作控制,以便在给定的最终时间将量子系统从初始状态转向到期望的目标状态。该控制框架基于精确可控性量子问题的最小规范优化配方,允许应用高效的Krylov-Newton优化技术。为了提供具有足够初始化的框架,讨论了延续程序。数值实验结果证明了拟议框架的有效性。

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