Kandrashkin Yu E
Zavoisky Physical-Technical Institute, FRC Kazan Scientific Center of RAS, 420029, Kazan, Russia.
J Magn Reson. 2024 Aug;365:107728. doi: 10.1016/j.jmr.2024.107728. Epub 2024 Jul 14.
The anisotropic Zeeman interaction of an ion, and the strong hyperfine interaction with its own nucleus, can significantly influence its interactions with the local environment. These effects, including the reduction of the effective magnetic moment of the electron spin and the phase memory decay rate, are studied theoretically. Analytical expressions describing the mean magnetic moment of the electron spin are obtained. The results of the theoretical analysis and accompanying numerical computations show that the strong hyperfine interaction of the ion reduces its effective magnetic moment. In particular, a 7% reduction is found for the scandium endofullerene Sc@C(CHPh) under conditions typical of an X-band EPR experiment.
离子的各向异性塞曼相互作用及其与自身原子核的强超精细相互作用,会显著影响其与局部环境的相互作用。从理论上研究了这些效应,包括电子自旋有效磁矩的减小和相位记忆衰减率。得到了描述电子自旋平均磁矩的解析表达式。理论分析和相关数值计算结果表明,离子的强超精细相互作用会降低其有效磁矩。特别是,在X波段电子顺磁共振实验的典型条件下,发现钪内嵌富勒烯Sc@C(CHPh)的有效磁矩降低了7%。