...
首页> 外文期刊>Applied Magnetic Resonance >Application of microwave amplitude modulation technique to measure spin-lattice and spin-spin relaxation times accurately with a continuous-wave EPR spectrometer: Solution of Bloch's equations by a matrix technique and least-squares fitting
【24h】

Application of microwave amplitude modulation technique to measure spin-lattice and spin-spin relaxation times accurately with a continuous-wave EPR spectrometer: Solution of Bloch's equations by a matrix technique and least-squares fitting

机译:微波振幅调制技术在连续波EPR光谱仪中准确测量自旋晶格和自旋自旋弛豫时间的应用:矩阵技术和最小二乘拟合对Bloch方程的求解

获取原文
获取原文并翻译 | 示例
           

摘要

A matrix technique to calculate signals recorded using the microwave amplitude-modulation technique is described. The calculations are carried out for spin packets, on and off resonance, to take into account inhomogeneous broadening. Both, the transverse component of magnetization representing the continuous-wave signal in a resonator, such as a cross-looped resonator, as well as the signal (electromotive force) induced in a pickup coil oriented parallel to the external magnetic field, are calculated for an arbitrary value of the coefficient of modulation. This is accomplished by solving the relevant Bloch equations in the rotating frame for the case when the amplitude of the microwave field is modulated by a sinusoidal wave, using Fourier expansions of the longitudinal and transverse components of the magnetization in Bloch equations. This results in a series of coupled equations in M-a(n) (alpha = y, z), the magnetic moments of various orders, leading to a penta-diagonal matrix of infinite dimension. These equations are then truncated and solved by a fast matrix technique to calculate M-alpha(n), required to calculate the modulation signals as functions of the amplitude-modulation frequency Omega. It is outlined how to exploit the expressions for the modulation signals to estimate the spin-lattice relaxation times T-1 and spin-spin relaxation times T-2 accurately by the least-squares procedure, fitting simultaneously all signals obtained for spin packets, on and off resonance, at various modulation frequencies. Illustrative examples are provided.
机译:描述了一种矩阵技术,用于计算使用微波幅度调制技术记录的信号。考虑到不均匀加宽,对自旋包进行开和关共振计算。两者的磁化横向分量均表示为谐振器(如交叉回路谐振器)中的连续波信号,以及在平行于外部磁场定向的拾波线圈中感应的信号(电动势)用于计算。调制系数的任意值。对于微波场的振幅由正弦波调制的情况,可以通过在旋转框架中求解相关的Bloch方程来实现,方法是使用Bloch方程中磁化的纵向和横向分量的傅立叶展开。这导致了M-a(n)(alpha = y,z)中的一系列耦合方程,即各种阶数的磁矩,从而产生了无限大的五角形矩阵。然后,这些方程式将被快速矩阵技术截断并求解,以计算M-alpha(n),这是计算调制信号作为幅度调制频率Omega的函数所必需的。概述了如何利用调制信号的表达式通过最小二乘法准确估计自旋晶格弛豫时间T-1和自旋-自旋弛豫时间T-2,同时拟合自旋数据包获得的所有信号。并在各种调制频率下产生共振。提供了说明性示例。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号