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The effect of dipolar interaction on the magnetic isotope effect

机译:偶极相互作用对磁同位素效应的影响

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A multi-channel kinetic description is used to study the magnetic isotope effect (MIE) in zero magnetic field. The maximal isotope effect is equal to the number of channels, two for the hyperfine interaction but four for the electron spin dipole-dipole interaction of the intermediate radical pair. Quantum mechanical calculations agree with these conclusion and show that large MIE may be obtained even in the presence of a strong exchange interaction. The observed magnesium isotope effect on the rate of enzymatic synthesis of adenosine triphosphate (ATP) is approximately 3 implying that the dipolar interaction is responsible for the effect. Our calculations provide support for the proposed mechanism.
机译:多通道动力学描述用于研究零磁场中的磁同位素效应(MIE)。最大同位素效应等于通道数,其中两个用于超精细相互作用,而四个用于中间自由基对的电子自旋偶极-偶极相互作用。量子力学计算与这些结论一致,表明即使在强交换相互作用下,也可以获得较大的MIE。观察到的镁同位素对三磷酸腺苷(ATP)酶促合成速率的影响约为3,这表明偶极相互作用是该作用的原因。我们的计算为提出的机制提供了支持。

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