首页> 外文期刊>Journal of magnetic resonance >Theory of EPR lineshape in samples concentrated in paramagnetic spins: Effect of enhanced internal magnetic field on high-field high-frequency (HFHF) EPR lineshape
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Theory of EPR lineshape in samples concentrated in paramagnetic spins: Effect of enhanced internal magnetic field on high-field high-frequency (HFHF) EPR lineshape

机译:顺磁自旋集中的样品中EPR线形的理论:增强的内部磁场对高频率高频EPR线形的影响

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摘要

A theoretical treatment is provided for the calculation of EPR (electron paramagnetic resonance) lineshape as affected by interactions with paramagnetic ions in the vicinity. The internal fields seen by the various paramagnetic ions due to interactions with paramagnetic ions in their vicinity, as well as the resulting lineshapes, become quite significant at high magnetic fields required in high-frequency (HFHF) EPR. The resulting EPR signals for the various ions are therefore characterized by different g-shifts and lineshapes, so that the overall EPR lineshape, which is an overlap of these, becomes distorted, or even split in HFHF EPR, from that observed at lower frequencies. The observed EPR lineshapes in MnSO _4?H _2O powder and K _3CrO _8 single-crystal samples have been simulated here taking into account g-shifts and modified lineshapes. These simulations show that in these samples, concentrated in paramagnetic spins, the position and lineshapes of EPR signals are significantly modified in HFHF EPR involving very high magnetic fields.
机译:为计算EPR(电子顺磁共振)线形受附近附近顺磁性离子相互作用的影响提供了理论处理。在高频(HFHF)EPR中需要的高磁场下,由于各种顺磁性离子与附近的顺磁性离子相互作用而产生的内部磁场以及由此产生的线形变得非常重要。因此,针对各种离子产生的EPR信号的特征在于不同的g位移和线形,因此,与之重叠的整个EPR线形在HFHF EPR中会变得失真,甚至从低频观察到时也会分裂。考虑到g位移和修正后的线形,在此处模拟了MnSO _4?H _2O粉末和K _3CrO _8单晶样品中观察到的EPR线形。这些模拟表明,在这些样本中,集中在顺磁自旋中,EPR信号的位置和线形在涉及非常高磁场的HFHF EPR中被显着修改。

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