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Nuclear magnetic resonance radiation dampling in inhomogeneous radio frequency fields: The toroid cavity detector

机译:非均匀射频场中的核磁共振辐射衰减:环形腔探测器

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摘要

A theory is presented for radiation damping (RD) in the toroid cavity nuclear magnetic resonance detector, a cylindrically symmetric inhomogeneous-rf field detector in which the magnitude of B_1 is inversely proporitional to the distance from the cylindrical symmetry axis. The equations of motion of the magnetization composite-pulse experiments are presented, along with a discussion of the effects of RD on the evolution of magnetization. Preliminary simulations of RD in the presence of inhomogeneous line broadening are also presented. The signature effect of radiation damping in the TCD is the winding or unwinding of magnetization gratings that has recently been observed by other researchers. The observed magnitude of the effect is linked to the effective filling factor, which currently appears to be limited by the stray inductance of the detection circuit. The results are of interest in connection with recent findings regarding the interaction of RD with the dipolar demagnetizing field.
机译:提出了一种关于环形腔核磁共振探测器中的辐射衰减(RD)的理论,该探测器是圆柱对称的非均匀rf场探测器,其中B_1的大小与到圆柱对称轴的距离成反比。介绍了磁化复合脉冲实验的运动方程,并讨论了RD对磁化演化的影响。还介绍了在不均匀线展宽的情况下对RD的初步模拟。 TCD中辐射衰减的标志性作用是最近已被其他研究人员观察到的磁化光栅的缠绕或解绕。观察到的效果大小与有效填充因子有关,有效填充因子当前似乎受到检测电路的杂散电感的限制。该结果与有关RD与偶极消磁场相互作用的最新发现有关。

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