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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Theoretical study of dynamic electron-spin-polarization via the doublet-quartet quantum-mixed state (II). Population transfer and magnetic field dependence of the spin polarizationt
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Theoretical study of dynamic electron-spin-polarization via the doublet-quartet quantum-mixed state (II). Population transfer and magnetic field dependence of the spin polarizationt

机译:通过二重态-四重态量子混合态进行动态电子自旋极化的理论研究(II)。自旋极化的种群转移和磁场依赖性

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The population transfer to the spin-sublevels of the unique quartet (S = 3/2) high-spin state of the strongly exchange-coupled (SC) radical-triplet pair (for example, an Acceptor-Donor-Radical triad (A-D-R)) via a doublet-quartet quantum-mixed (QM) state is theoretically investigated by a stochastic Liouville equation. In this work, we have treated the loss of the quantum coherence (de-coherence) due to the de-phasing during the population transfer and neglected the effect of other de-coherence mechanisms. The dependences on the magnitude of the exchange coupling or the fine-structure parameter of the QM state are investigated. The dependence on the velocity of the population transfer (by the electron transfer or the energy-transfer) from the QM state to the SC quartet state is also clarified. It is revealed that the de-coherence during the population transfer mainly originates from the fine-structure term of the QM state in the doublet-triplet exchange coupled systems. This de-coherence leads to the unique dynamic electron polarization (DEP) on the high-field spin sublevels of the SC state, which is similar to the unique DEP pattern of the photo-excited triplet states of the reaction centers of photosystems I and II. The magnetic field dependence of the population transfer leading to the populations of the spin-sublevels of the SC states is also calculated. The possibility of the control of energy transport, spin transport and information technology by using the QM state is discussed based on these results. The knowledge obtained in this work is useful in the spin dynamics of any doublet-triplet exchange coupled systems.
机译:种群转移到强交换耦合(SC)自由基-三重态对(例如,受体-受体-自由基-三重态(ADR))的唯一四重态(S = 3/2)高自旋态的自旋子能级理论上,通过一个随机的Liouville方程研究了通过一个四重态四重态的量子混合(QM)态。在这项工作中,我们已经处理了由于人口迁移过程中的失相而导致的量子相干性(去相干性)的损失,并且忽略了其他去相干性机制的影响。研究了交换耦合的大小或QM状态的精细结构参数的依赖性。还阐明了从QM态到SC四重态的人口迁移速度(通过电子转移或能量转移)的依赖性。结果表明,人口迁移过程中的非相干性主要源于双重三重态交换耦合系统中QM状态的精细结构项。这种去相干导致SC状态的高场自旋子能级上具有唯一的动态电子极化(DEP),这类似于光系统I和II的反应中心的光激发三重态的独特DEP模式。 。还计算了导致SC状态的自旋子能级的种群转移的磁场依赖性。基于这些结果,讨论了使用QM状态控制能量传输,自旋传输和信息技术的可能性。在这项工作中获得的知识可用于任何双峰-三重态交换耦合系统的自旋动力学。

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