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Manifestations of classical physics in the quantum evolution of correlated spin states in pulsed NMR experiments

机译:脉冲NMR实验中相关自旋态的量子演化中经典物理学的表现

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摘要

Multiple‐pulse NMR experiments are a powerful tool for the investigation of molecules with coupled nuclear spins. The product operator formalism provides a way to understand the quantum evolution of an ensemble of weakly coupled spins in such experiments using some of the more intuitive concepts of classical physics and semi‐classical vector representations. In this paper I present a new way in which to interpret the quantum evolution of an ensemble of spins. I recast the quantum problem in terms of mixtures of pure states of two spins whose expectation values evolve identically to those of classical moments. Pictorial representations of these classically evolving states provide a way to calculate the time evolution of ensembles of weakly coupled spins without the full machinery of quantum mechanics, offering insight to anyone who understands precession of magnetic moments in magnetic fields.
机译:多脉冲NMR实验是研究具有耦合核自旋的分子的强大工具。乘积算子形式主义提供了一种方法,可以使用一些更直观的经典物理学概念和半经典矢量表示形式,在此类实验中理解弱耦合自旋的量子演化。在本文中,我提出了一种新的方式来解释自旋系的量子演化。我用两个自旋的纯态混合来重现量子问题,它们的期望值与经典矩的期望值完全相同。这些经典演化状态的图形表示提供了一种无需复杂的量子力学机制即可计算弱耦合自旋集合体的时间演化的方法,为了解磁场中磁矩进动的任何人提供了见识。

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