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Floquet theory of radical pairs in radiofrequency magnetic fields

机译:射频磁场中自由基对的浮球理论

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We present a new method for calculating the product yield of a radical pair recombination reaction in the presence of a weak time-dependent magnetic field. This method successfully circumvents the computational difficulties presented by a direct solution of the Liouville-von Neumann equation for a long-lived radical pair containing many hyperfine-coupled nuclear spins. Using a modified formulation of Floquet theory, treating the time-dependent magnetic field as a perturbation, and exploiting the slow radical pair recombination, we show that one can obtain a good approximation to the product yield by considering only nearly degenerate sub-spaces of the Floquet space. Within a significant parameter range, the resulting method is found to give product yields in good agreement with exact quantum mechanical results for a variety of simple model radical pairs. Moreover it is considerably more efficient than the exact calculation, and it can be applied to radical pairs containing significantly more nuclear spins. This promises to open the door to realistic theoretical investigations of the effect of radiofrequency electromagnetic radiation on the photochemically induced radical pair recombination reactions in the avian retina which are believed to be responsible for the magnetic compass sense of migratory birds. Published by AIP Publishing.
机译:我们提出了一种新的方法来计算在弱时间相关磁场的存在下自由基对重组反应的产物收率。该方法成功地解决了由Liouville-von Neumann方程直接求解包含许多超精细耦合核自旋的长寿命自由基对所带来的计算难题。使用改进的Floquet理论公式,将随时间变化的磁场视为一种扰动,并利用慢速自由基对复合,我们表明,仅考虑几乎退化的子空间,就可以很好地近似于产品产率。球拍空间。在一个重要的参数范围内,发现所得到的方法所产生的产物收率与各种简单模型自由基对的精确量子力学结果吻合良好。而且,它比精确计算要有效得多,并且可以应用于包含明显更多的核自旋的自由基对。这有望为射频电磁辐射对禽视网膜中光化学诱导的自由基对重组反应影响的现实理论研究敞开大门,据信这是候鸟的磁罗盘感的原因。由AIP Publishing发布。

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