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首页> 外文期刊>Radiation Physics and Chemistry >Evolution of energy deposition processes in anthracene single crystal from photochemistry to radiation chemistry under excitation with synchrotron radiation from 3 to 700 eV
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Evolution of energy deposition processes in anthracene single crystal from photochemistry to radiation chemistry under excitation with synchrotron radiation from 3 to 700 eV

机译:在3至700 eV的同步加速器激发下,蒽单晶中能量沉积过程从光化学到辐射化学的演变

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Absolute values of quantum yield Φ(hv) of singlet exciton formation in anthracene single crystals were measured as a function of photon energy hv, with the usage of synchrotron radiation (SR) in 3-700 eV region. Values of Φ(hv) were found to increase linearly for hv ≥ 75 eV. For hv ≤ 40 eV, values of Φ(hv) gave a wealth of structures and are not linear to hv. Because number of secondary electrons produced by radiation is thought to increase in proportional to the incident photon energy, it is natural to conclude that the radiation chemistry effect becomes dominant above 75 eV. On the other hand, values of Φ(hv) showed response due to resonance rather than linear dependence with hv, which implies that the photochemical effect is dominant below 40 eV.
机译:使用3-700 eV区域中的同步辐射(SR),测量蒽单晶中单重态激子形成的量子产率Φ(hv)的绝对值与光子能量hv的关系。发现Φ(hv)的值在hv≥75 eV时线性增加。对于hv≤40 eV,Φ(hv)的值给出了很多结构,并且与hv不线性。由于辐射产生的二次电子的数量被认为与入射光子能量成正比增加,因此自然可以得出结论,辐射化学效应在75 eV以上占主导地位。另一方面,Φ(hv)的值显示出由于共振引起的响应,而不是与hv呈线性相关,这表明在40 eV以下,光化学作用占主导。

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