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Vector data medium in an inhomogeneously broadened two-level NMR system

机译:载体数据介质在不可通过大地扩大的两级NMR系统中

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摘要

A dynamical approach in combination with the proper geometric Clifford algebra is proposed to describe information flows formed during resonance application of rf magnetic field pulses to an inhomogeneously broadened two-level nuclear spin system. It permits one to introduce a notion of vector data medium and to follow spin system evolution in four different ways, which are connected through the formalism of Cayle-Klein parameters. The notion of coherence is generalized to include differences in space orientations and resonance frequencies for elements of the vector data medium. It is shown that information about pulse parameters of an excitation sequence is written in a spin system with manifold redundancy and by no means is always available for reading. The approach allows one to calculate all information flows which are formed in an arbitrary inhomogeneously broadened two-level system under conditions of any multipulsed experiment as well as necessary and sufficient conditions for their reading for a given way of detection.
机译:提出了一种与适当的几何克利福德代数结合的动态方法来描述在RF磁场脉冲的共振施加期间形成的信息流,以不均匀地扩大的两级核自旋系统。它允许人们引入矢量数据介质的概念,并以四种不同的方式遵循自旋系统演化,这通过Cayle-Klein参数的形式主义连接。连贯的概念是推广的,以包括矢量数据介质的元素的空间取向和共振频率的差异。结果表明,有关激励序列的脉冲参数的信息以具有歧管冗余的旋转系统中写入,并且绝不可始终可用于读取。该方法允许人们在任何多呼出实验的条件下计算在任意均匀地扩展的双层系统中形成的所有信息流,以及用于给定的检测方式的读取条件。

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