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各向异性 g 张量和自旋为 1/2 的顺磁中心的自旋动力学。

Spin dynamics of paramagnetic centers with anisotropic g tensor and spin of 1/2.

机构信息

The Institute of Chemical Kinetics and Combustion, The Siberian Branch of the Russian Academy of Science, 3 Institutskaya St., Novosibirsk 630090, Russia.

出版信息

J Magn Reson. 2012 Aug;221:69-75. doi: 10.1016/j.jmr.2012.05.011. Epub 2012 May 26.

Abstract

The influence of g tensor anisotropy on spin dynamics of paramagnetic centers having real or effective spin of 1/2 is studied. The g anisotropy affects both the excitation and the detection of EPR signals, producing noticeable differences between conventional continuous-wave (cw) EPR and pulsed EPR spectra. The magnitudes and directions of the spin and magnetic moment vectors are generally not proportional to each other, but are related to each other through the g tensor. The equilibrium magnetic moment direction is generally parallel to neither the magnetic field nor the spin quantization axis due to the g anisotropy. After excitation with short microwave pulses, the spin vector precesses around its quantization axis, in a plane that is generally not perpendicular to the applied magnetic field. Paradoxically, the magnetic moment vector precesses around its equilibrium direction in a plane exactly perpendicular to the external magnetic field. In the general case, the oscillating part of the magnetic moment is elliptically polarized and the direction of precession is determined by the sign of the g tensor determinant (g tensor signature). Conventional pulsed and cw EPR spectrometers do not allow determination of the g tensor signature or the ellipticity of the magnetic moment trajectory. It is generally impossible to set a uniform spin turning angle for simple pulses in an unoriented or 'powder' sample when g tensor anisotropy is significant.

摘要

研究了真实或有效自旋为 1/2 的顺磁中心的自旋动力学中 g 张量各向异性的影响。g 各向异性会影响 EPR 信号的激发和检测,导致常规连续波(cw)EPR 和脉冲 EPR 谱之间产生明显差异。自旋和磁矩矢量的大小和方向通常彼此不成比例,而是通过 g 张量相互关联。由于 g 各向异性,平衡磁矩方向通常既不平行于磁场也不平行于自旋量子化轴。在短微波脉冲激发后,自旋矢量在其量子化轴周围进动,进动平面通常不垂直于外加磁场。矛盾的是,磁矩矢量在其平衡方向周围以一个精确垂直于外磁场的平面进动。在一般情况下,磁矩的振荡部分呈椭圆偏振,进动方向由 g 张量行列式的符号(g 张量符号)决定。常规脉冲和 cw EPR 光谱仪无法确定 g 张量符号或磁矩轨迹的椭圆度。当 g 张量各向异性显著时,对于无取向或“粉末”样品中的简单脉冲,通常不可能为自旋设置均匀的旋转角度。

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