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基于对贝特表面的改进介电描述,得出0.1 - 10 keV能量范围内液态水的精确电子非弹性截面和阻止本领。

Accurate electron inelastic cross sections and stopping powers for liquid water over the 0.1-10 keV range based on an improved dielectric description of the Bethe surface.

作者信息

Emfietzoglou D, Nikjoo H

机构信息

Medical Physics Laboratory, University of Ioannina Medical School, Ioannina 451 10, Greece.

出版信息

Radiat Res. 2007 Jan;167(1):110-20. doi: 10.1667/RR0551.1.

Abstract

Electron inelastic cross sections and stopping powers for liquid water over the 0.1-10 keV range are presented based on a recently developed dielectric response model for liquid water (D. Emfietzoglou, F. Cucinotta and H. Nikjoo, Radiat. Res. 164, 202-211, 2005) that is consistent with the experimental data over the whole energy-momentum plane. Both exchange and second-order Born corrections are included in a material-specific way using the dielectric functions of liquid water. The numerical results are fitted by simple analytic functions to facilitate their further use. Compared to previous studies, differential cross sections are shifted toward smaller energy losses resulting in smaller inelastic and stopping cross sections with differences reaching, on average, the approximately 20% and approximately 50% level, respectively. Contrary to higher energies, it is shown that the dispersion model for the momentum dependence of the dielectric functions (Bethe ridge) is as important as the optical model used. Within the accuracy of the experimental data (a few percent) upon which our dielectric model is based, the calculations are "exact" to first order, while the uncertainty of the results beyond first order is estimated at the 5-10% level. The present work overcomes the limitations of Bethe's theory at low energies by a self-consistent account of inner-shell effects and may serve to extend the ICRU electron stopping power database for liquid water down to 100 eV with a level of uncertainty similar to that for the higher-energy values.

摘要

基于最近开发的液态水介电响应模型(D. Emfietzoglou、F. Cucinotta和H. Nikjoo,《辐射研究》164卷,202 - 211页,2005年),给出了0.1 - 10 keV能量范围内液态水的电子非弹性截面和阻止本领,该模型在整个能量 - 动量平面上与实验数据一致。利用液态水的介电函数,以材料特定的方式包含了交换修正和二阶玻恩修正。数值结果通过简单的解析函数进行拟合,以方便进一步使用。与先前的研究相比,微分截面朝着较小的能量损失方向移动,导致非弹性截面和阻止截面变小,差异平均分别达到约20%和约50%的水平。与较高能量情况相反,结果表明,介电函数动量依赖性的色散模型(贝特脊)与所使用的光学模型同样重要。在我们的介电模型所基于的实验数据精度(百分之几)范围内,计算在一阶是“精确的”,而超出一阶的结果不确定性估计在5 - 10%的水平。本工作通过自洽考虑内壳层效应克服了低能情况下贝特理论的局限性,并可用于将液态水的ICRU电子阻止本领数据库扩展到100 eV,其不确定性水平与较高能量值的类似。

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