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Symbolic NMR product operator calculations

机译:NMR产品符号运算符的计算

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Symbolic nuclear magnetic resonance (NMR) product operator calculations provide an analytic, intuitive, yet precise description of the time evolution of the density operator during an NMR experiment. NMR experiments are implemented as pulse sequences consisting of short radiofrequency pulses separated by delay periods during which the spin system evolves under the influence of the static external magnetic field and spin-spin interactions. The quantum mechanical calculations to follow the time evolution of the density operator can be decomposed into the repeated application of a set of simple rules, known as the product operator formalism, that naturally lend themselves to symbolic computation. This article describes a complete implementation of the NMR Product Operator formalism in MAthematica (POMA), which has greatly simplified the development of many NMR pulse sequences, and provided insight into their functioning. (c) 2005 Wiley Periodicals, Inc.
机译:符号核磁共振(NMR)运算符的计算提供了NMR实验过程中密度运算符的时间演化的分析,直观而精确的描述。 NMR实验被实施为由短射频脉冲组成的脉冲序列,这些短脉冲由延迟周期分隔,在此期间自旋系统在静态外部磁场和自旋-自旋相互作用的影响下发展。遵循密度算子的时间演化的量子力学计算可以分解为重复应用一组简单的规则(称为乘积算子形式主义),这些规则自然地适合于符号计算。本文介绍了MAthematica(POMA)中NMR产品操作员形式的完整实现,它大大简化了许多NMR脉冲序列的开发过程,并提供了对其功能的深入了解。 (c)2005年Wiley Periodicals,Inc.

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