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Shift-driven modulations of spin-echo signals

机译:自旋回波信号的移位驱动调制

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摘要

Since the pioneering works of Carr-Purcell and Meiboom-Gill [Can HY, Purcell EM (1954) Phys Rev 94:630; Meiboom S.Gill D (1985) Rev Sci Instrum 29:688], trains of π-pulses have featured amongst the main tools of quantum control. Echo trains find widespread use in nuclear magnetic resonance spectroscopy (NMR) and imaging (MRI), thanks to their ability to free the evolution of a spin-112 from several sources of decoherence. Spin echoes have also been researched in dynamic decoupling scenarios, for prolonging the lifetimes of quantum states or coherences. Inspired by this search we introduce a family of spin-echo sequences, which can still detect site-specific interactions like the chemical shift. This is achieved thanks to the presence of weak environmental fluctuations of common occurrence in high-field NMR—such as homonuclear spin-spin couplings or chemical/biochemical exchanges. Both intuitive and rigorous derivations of the resulting "selective dynamical recoupling" sequences are provided. Applications of these novel experiments are given for a variety of NMR scenarios including determinations of shift effects under inhomogeneities overwhelming individual chemical identities, and model-free characterizations of chemically exchanging partners.
机译:自Carr-Purcell和Meiboom-Gill的开创性工作以来[Can HY,Purcell EM(1954)Phys Rev 94:630; Meiboom S.Gill D(1985)Rev Sci Instrum 29:688],π脉冲序列是量子控制的主要工具之一。由于回声火车能够使自旋112的进化从多个退相干源中释放出来,因此它们在核磁共振波谱(NMR)和成像(MRI)中得到了广泛的应用。自旋回波也已经在动态去耦场景中进行了研究,以延长量子态或相干的寿命。受此搜索的启发,我们引入了自旋回波序列家族,该序列仍然可以检测特定位置的相互作用,例如化学位移。由于存在高磁场NMR中常见的弱环境波动(例如同核自旋-自旋偶合或化学/生化交换),因此可以实现这一目标。提供了所产生的“选择性动力重新耦合”序列的直观和严格的推导。给出了这些新颖实验在各种NMR场景中的应用,包括确定在不均匀性下压倒单个化学特性的位移效应,以及化学交换对象的无模型表征。

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