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Electronic stopping power of diamond for electrons and positrons
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We assess a new data set of mass electronic stopping powers of diamond for electrons and positrons.
To this end, an optical energy-loss function (OELF) for this material is generated from available
experimental dielectric properties of the valence band and photoabsorption mass attenuation
coefficients, supplemented with a Drude-type analytical expression to interpolate at intermediate
energies. From this synthetic OELF, a mean excitation energy equal to (88.5±2.0) eV is extracted and
the density-effect correction is evaluated using Fano’s simplified method. These quantities then allow
calculating the mass electronic stopping power of diamond for electrons and positrons by means of
the relativistic Bethe formula. The present results for 1 keV–1 GeV electrons in diamond are 0.9%–
3.3% smaller than those corresponding to graphite as tabulated in ICRU Report 90.
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FERNÁNDEZ VAREA, José maría, GÓRKA, Bartosz, NILSSON, Bo. Electronic stopping power of diamond for electrons and positrons. _Physics in Medicine and Biology_. 2021. Vol. 66, núm. 165003-1-165003-13. [consulta: 5 de febrer de 2026]. ISSN: 0031-9155. [Disponible a: https://hdl.handle.net/2445/226409]