Ajoy G, Ramakrishna J, Bahçeli S, Klinowski J
Department of Physics, Indian Institute of Science, Bangalore.
Solid State Nucl Magn Reson. 2000 Jul;16(4):305-38. doi: 10.1016/s0926-2040(00)00084-9.
We derive a complete analytical solution for the powder magic angle spinning (MAS) nuclear magnetic resonance (NMR) lineshape in the presence of second-order quadrupole interaction, considering a radiofrequency (rf) pulse of finite width, a finite MAS frequency, and a non-zero asymmetry parameter. (Ix) is calculated using two approaches. The first applies time-dependent perturbation theory in the presence of the rf pulse and stationary perturbation theory (SPT) in its absence. The second is based on the Magnus expansion of the density matrix in the interaction representation during the pulse and SPT in its absence. We solve the problem in the laboratory frame using the properties of the Fourier transform and spin operators. Diagonalisation is not required. Both approaches agree well with each other under all conditions and also with the transition probability approach for the central transition. The Magnus expansion exists at all times and the effect of the non-secular terms is negligible. We describe an analytical method of averaging (Ix) over the Euler angles and simulate the 11B MAS NMR lineshapes for crystalline and vitreous B2O3. A critical analysis is given of all earlier calculations of the MAS NMR lineshape.
我们推导了在存在二阶四极相互作用的情况下,粉末魔角旋转(MAS)核磁共振(NMR)线形的完整解析解,考虑了有限宽度的射频(rf)脉冲、有限的MAS频率和非零不对称参数。使用两种方法计算〈Ix〉。第一种方法在存在rf脉冲时应用含时微扰理论,在不存在rf脉冲时应用定态微扰理论(SPT)。第二种方法基于脉冲期间相互作用表象中密度矩阵的马格努斯展开以及不存在脉冲时的SPT。我们利用傅里叶变换和自旋算符的性质在实验室坐标系中解决该问题。无需进行对角化。在所有条件下,两种方法彼此吻合良好,并且与中心跃迁的跃迁概率方法也吻合良好。马格努斯展开始终存在,非久期项的影响可忽略不计。我们描述了一种对〈Ix〉在欧拉角上进行平均的解析方法,并模拟了晶体和玻璃态B2O3的11B MAS NMR线形。对所有早期的MAS NMR线形计算进行了批判性分析。