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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Experimental investigation of electron and positron interactions with monosubstituted and disubstituted benzene derivatives: fluorobenzene, 1,3-difluorobenzene and 1,4-difluorobenzene molecules
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Experimental investigation of electron and positron interactions with monosubstituted and disubstituted benzene derivatives: fluorobenzene, 1,3-difluorobenzene and 1,4-difluorobenzene molecules

机译:电子和正电子与单取代和二取代苯衍生物:氟苯,1,3-二氟苯和1,4-二氟苯分子相互作用的实验研究

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Electron and positron scattering from fluorobenzene (C6H5F), 1, 3-difluorobenzene (1,3-C6H4F2) and 1,4-difluorobenzene (1,4-C6H4F2) molecules have been investigated experimentally using the linear transmission time-of-flight method. Total cross sections (TCSs) were measured and determined for 0.8-600 eV and 0.7-600 eV, respectively, for electron and positron scattering from 1, 3-C6H4F2 and 1, 4-C6H4F2 molecules, and 0.4-1000 eV and 0.2-1000 eV, respectively, for electron and positron scattering from C6H5F molecules. A broad resonance structure has been observed in the C6H5F electron TCSs at 0.8-1.6 eV, corresponding to the 1.6 eV E-2(2u) C6H6 resonance structure. This broad structure seems to be made of two structures at 0.8 eV and 1.4 eV, which should mean that the original single 1.6 eV resonance peak in. the CA parent molecule has split into two upon the monosubstitution of its H atom by the F atom. 1,3-C6H4F2 electron TCSs show a rising trend below 2 eV, a feature attributed to the polar nature of these molecules. Above 4 eV for all these three molecules, electron TCSs are greater than positron TCSs by a factor of similar to2 at energies up to 40 eV.
机译:使用线性传输飞行时间方法对氟苯(C6H5F),1、3-三氟苯(1,3-C6H4F2)和1,4-二氟苯(1,4-C6H4F2)分子的电子和正电子散射进行了实验研究。测量并确定总截面(TCS)分别为1,3-C6H4F2和1,4-C6H4F2分子和0.4-1000eV和0.2-0.8-600 eV和0.7-600 eV的电子和正电子散射。 1000 eV,分别用于从C6H5F分子进行电子和正电子散射。在C6H5F电子TCS中,在0.8-1.6 eV处观察到了宽共振结构,相当于1.6 eV E-2(2u)C6H6共振结构。这种宽泛的结构似乎由两个处于0.8 eV和1.4 eV的结构组成,这应该意味着原始的单个1.6 eV共振峰进入。CA母体分子在其H原子被F原子单取代后已分裂为两个。 1,3-C6H4F2电子TCS在2 eV以下显示出上升趋势,这归因于这些分子的极性。对于这三个分子,在4 eV以上,电子TCS在能量高达40 eV时比正电子TCS大2倍。

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