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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Spin-correlated radical pairs: microwave pulse effects on lifetimes, electron spin echo envelope modulations, and optimum conditions for detection by electron spin echo spectroscopy
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Spin-correlated radical pairs: microwave pulse effects on lifetimes, electron spin echo envelope modulations, and optimum conditions for detection by electron spin echo spectroscopy

机译:自旋相关的自由基对:微波脉冲对寿命,电子自旋回波包络调制的影响以及通过电子自旋回波光谱检测的最佳条件

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摘要

A theoretical description is presented of the use of electron spin echo spectroscopy to study the spin-correlated radical pairs encountered in photosynthetic systems. The analysis includes and extra microwave pulse, prior to the spin echo, whose purpose is to alter the radical pair lifetime by populating spin energy levels from which the pair is unable to recombine directly. The optimal flip-angles of the three non-selective pulses are derived, the time dependence produced by spin-lattice relaxation and recombination is predicted, and the echo modulations arising from electron-electron and electron-nuclear interactions are calculated. The implications of the latter for the determination of the exchange and dipolar interactions, and hence the separation, of the two electron spins are discussed.
机译:提出了使用电子自旋回波光谱技术研究光合系统中遇到的自旋相关自由基对的理论描述。该分析包括在自旋回波之前产生的额外微波脉冲,其目的是通过填充自旋能级来改变自由基对的寿命,自旋能级无法从中直接重组。推导了三个非选择脉冲的最佳翻转角,预测了自旋晶格弛豫和复合产生的时间依赖性,并计算了由电子-电子和电子-核相互作用产生的回波调制。讨论了后者对于确定两个电子自旋的交换和偶极相互作用以及分离的意义。

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