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各向异性超精细相互作用对14N电子核双共振及电子自旋回波包络调制取向无序谱的影响。

Influence of the anisotropic hyperfine interaction on the 14N ENDOR and the ESEEM orientation-disordered spectra.

作者信息

Benetis Nikolas P, Dikanov Sergei A

机构信息

Institute of Organic and Pharmaceutical Chemistry, Laboratory of Molecular Analysis, National Hellenic Research Foundation, EIE, Vas. Konstantinou str. 48, Athens GR-116 35, Greece.

出版信息

J Magn Reson. 2005 Jul;175(1):124-45. doi: 10.1016/j.jmr.2005.03.012.

Abstract

The influence of the anisotropic hyperfine interaction on the 14N electron-nuclear double resonance/electron spin echo envelope modulation spectra is studied by approximate analytical and graphical methods for the case of the isotropic g-factor. The suggested determination of the modified characteristic directions of the magnetic field due to anisotropy enhances the insight in the structural details of the system and analytical solutions of the secular equation for these conditions are derived. The graphical method, previously used for the analysis of the orientation dependence of the 14N nuclear-transition frequencies in orientation-disordered samples for isotropic hyperfine interaction is extended to the case of arbitrary anisotropic hyperfine tensor. The above analytical and graphical methods are illustrated and tested against exact simulations in two practically important cases: (i) isotropic hyperfine interaction (hfi) exceeding other nuclear interactions in nuclear spin Hamiltonian. (ii) Cancellation of the isotropic part of the hfi.

摘要

对于各向同性g因子的情况,通过近似解析和图形方法研究了各向异性超精细相互作用对14N电子 - 核双共振/电子自旋回波包络调制谱的影响。所提出的由于各向异性导致的磁场修正特征方向的确定增强了对系统结构细节的洞察,并推导了这些条件下久期方程的解析解。之前用于分析各向同性超精细相互作用下取向无序样品中14N核跃迁频率取向依赖性的图形方法被扩展到任意各向异性超精细张量的情况。在两个实际重要的情况下,针对精确模拟对上述解析和图形方法进行了说明和测试:(i)核自旋哈密顿量中各向同性超精细相互作用(hfi)超过其他核相互作用。(ii)hfi各向同性部分的抵消。

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