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Optical enhancement of DNA-base radio-resistivity

机译:DNA碱基抗辐射性的光学增强

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摘要

We propose a mechanism which uses the simultaneous application of circularly polarized light and an external magnetic field to control the polarization of the free radicals and create S=l electron-hole spin excitations (excitons) on nucleotide-base. We deploy an ab-initio molecular dynamics model to calculate the characteristic parameters of the light needed for optical transitions. The effect of spin-injection on the formation of a free energy barrier in diffusion controlled chemical reaction pathways leads to the control of radiation-induced base damage. The proposed method allows us to manipulate and partially suppress the damage induced by ionizing radiation.
机译:我们提出了一种机制,该机制利用圆偏振光和外部磁场的同时施加来控制自由基的极化,并在核苷酸基上产生S = 1电子-空穴自旋激发(激子)。我们部署了一个从头算分子动力学模型来计算光学跃迁所需的光的特征参数。自旋注入对扩散受控化学反应路径中自由能垒形成的影响导致对辐射诱导的碱损伤的控制。所提出的方法使我们能够操纵并部分抑制电离辐射引起的损害。

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