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首页> 外文期刊>The Journal of Chemical Physics >The triplet mechanism of electron spin polarization in moderately coupled triplet-doublet rigid complexes as a source of the enhanced+1/2 <->-1/2 transitions
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The triplet mechanism of electron spin polarization in moderately coupled triplet-doublet rigid complexes as a source of the enhanced+1/2 <->-1/2 transitions

机译:中等耦合三重胶囊刚性复合物中电子自旋偏振的三重态机理为增强型+ 1/2 - 1/2转变的源

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The light-induced electron spin polarization generated in the excited quartet and doublet states of a system consisting of a chromophore with an attached radical is investigated theoretically. Excitation of the chromophore and subsequent relaxation leads to a coupled triplet-doublet spin system. In many such systems, the electronic coupling between the triplet and doublet spins is expected to be strong enough to split the spin system into so-called trip-doublet and trip-quartet states but sufficiently weak that it does not promote significant mixing between the sing-doublet and trip-doublet states. In such moderately coupled systems, the sing-doublet can relax to the trip-doublet and trip-quartet states by spin-orbit coupling mediated intersystem crossing within the chromophore. An analytical expression is derived for the intensity of the polarization generated by this mechanism for the m(s) = +1/2 <-> -1/2 electron paramagnetic resonance transitions of the trip-doublet and trip-quartet states. The expression shows that the intensity and sign of the polarization depend strongly on ratio j(omega) = 3J/omega(0) between the triplet-doublet exchange interaction J and the Zeeman energy omega(0). The polarization becomes undefined when j(omega) = 1 and when j(omega) = 2 because level-anticrossings between the trip-doublet and trip-quartet sublevels occur. The sign of the polarization is also found to change above and below these values. Thus, for such moderately coupled systems, the sign of the polarization and its Zeeman energy dependence can be used to estimate the magnitude of the exchange coupling. Published under license by AIP Publishing.
机译:理论上研究了由具有附着的基团的发色团组成的系统中产生的光诱导的电子自旋极化和在由发色团组成的系统的双细胞状态。发色团的激发和随后的弛豫导致耦合的三重态 - 双峰旋转系统。在许多这样的系统中,预期三重态和双链旋转之间的电子耦合足以足够强,以将旋转系统分成所谓的跳闸和跳闸四分之一状态,但足够弱的速度使其不会促进歌曲之间的显着混合-doublet和旅行双重状态。在这种中等耦合的系统中,通过在发色团内的旋转轨道耦合介导的交叉线路旋转轨道耦合介导的交叉系统可以放松跳转双峰和跳闸四方状态。导出分析表达,用于通过该机制产生的偏振产生的偏振强度= +1/2的跳闸和跳闸四重奏状态的偏振率-1/2电子顺啮合转换。该表达表明,偏振的强度和符号在三重态 - 双峰交换交换交换交流J和Zeeman能量ω(0)之间的比率J(Omega)= 3J / Omega(0)之间的比率J(Omega)= 3J / OMEGA(0)。当J(OMEGA)= 1和J(ω)= 2时,偏振变得未定义,因为跳闸和跳闸和跳闸级速度之间的水平抵抗。还发现偏振的迹象也被发现在这些值的上方和下方改变。因此,对于这种中等耦合的系统,可以使用偏振的标志及其塞曼能量依赖性来估计交换耦合的大小。通过AIP发布在许可证下发布。

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