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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Cone separation, quadratic control systems and control of spin dynamics in the presence of decoherence
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Cone separation, quadratic control systems and control of spin dynamics in the presence of decoherence

机译:锥体分离,二次控制系统和旋转动力学在脱干术中的控制

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摘要

In this paper, we study some control problems related to the control of coupled spin dynamics in the presence of relaxation and decoherence in nuclear magnetic resonance spectroscopy. The decoherence is modelled through a master equation. We study some model problems, whereby, through an appropriate choice of state variables, the system is reduced to a control system, where the state enters linearly and controls quadratically. We study this quadratic control system. Study of this system gives us explicit bounds on how close a coupled spin system can be driven to its target state and how much coherence and polarization can be transferred between coupled spins. Optimal control for the quadratic control system can be understood as the separation of closed cones, and we show how the derived results on optimal efficiency can be interpreted in this formulation. Finally, we study some finite-time optimal control problems for the quadratic control system.
机译:在本文中,我们研究了在核磁共振光谱的弛豫和粘膜的存在下控制耦合旋转动力学的控制问题。 通过主方程模型模板。 我们研究了一些模型问题,从而通过适当的状态变量选择,系统减少到控制系统,该控制系统在线进入线性和互联地控制。 我们研究了这种二次控制系统。 对该系统的研究为我们提供了明确的限制,耦合旋转系统可以被驱动到其目标状态,并且可以在耦合的旋转之间传递多长度和极化。 对二次控制系统的最佳控制可以被理解为封闭锥体的分离,并且我们展示了如何解释在该制剂中获得最佳效率的结果。 最后,我们研究了二次控制系统的一些有限时间最佳控制问题。

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