首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >The Spin Mixing Process of a Radical Pair in Low Magnetic Field Observed by Transient Absorption Detected Nanosecond Pulsed Magnetic Field Effect
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The Spin Mixing Process of a Radical Pair in Low Magnetic Field Observed by Transient Absorption Detected Nanosecond Pulsed Magnetic Field Effect

机译:瞬态吸收检测纳秒脉冲磁场效应观察到的低磁场中自由基对的自旋混合过程

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摘要

The spin mixing process of the radical pair in the sodium dodecyl sulfate(SDS)micelle is studied by using a novel technique nanosecond pulsed magnetic field effect on transient absorption.We have developed the equipment for a nanosecond pulsed magnetic field and observed its effect on the radical pair reaction.A decrease of the free radical yield by a reversely directed pulsed magnetic field that cancels static field is observed,and the dependence on its magnitude,which is called pulsed MARY(magnetic field effect on reaction yield)spectra,is studied.The observed spectra reflect the spin mixing in 50-200 ns and show clear time evolution.Theoretical simulation of pulsed MARY spectra based on a single site modified Liouville equation indicates that the fast spin dephasing processes induced by the modulation of electron-electron spin interaction by molecular reencounter affect to the coherent spin mixing by a hyperfine interaction in a low magnetic field.
机译:利用新技术纳秒脉冲磁场对瞬态吸收的影响研究了十二烷基硫酸钠(SDS)胶束中自由基对的自旋混合过程。我们开发了纳秒脉冲磁场的设备,并观察了其对纳秒脉冲磁场的影响。观察到通过消除静电场的反向脉冲磁场降低了自由基的产生,并研究了自由基的大小,这种依赖性称为脉冲MARY(磁场对反应产率的影响)光谱。观测到的光谱反映了在50-200 ns内的自旋混合并显示出清晰的时间演化。基于单点修正Liouville方程的脉冲MARY光谱的理论模拟表明,由电子自旋相互作用的调制引起的快速自相移过程分子在低磁场中通过超精细相互作用而对相干自旋混合产生影响。

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