The effective differential cross section for inelastic energy loss of electrons in matter
Author:
Publisher
Elsevier BV
Subject
Instrumentation,Nuclear and High Energy Physics
Reference19 articles.
1. Experimental benchmarks of the Monte Carlo code penelope
2. Simple method for the simulation of multiple elastic scattering of electrons
3. Backscattering coefficients and mean penetration depths of 1–4 keV electron scattering in solids
4. Simplified models for the Monte Carlo simulation of energy distributions of keV electrons transmitted or back-scattered in various solids
5. Fitting a simple model of inelastic scattering in Monte Carlo code to experimental data
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1. Monte Carlo calculation of the backscattering coefficient of thin films of low on high atomic number materials and the reverse as a function of the incident electron energy and film thickness;Applied Physics A;2018-09-19
2. Analytical Theory of Energy Relaxation Upon Propagation of a High-Energy Electron Beam in Gas;High Temperature;2018-01
3. The analytical differential cross section of elastic scattering of atoms aimed to be used in Monte Carlo modeling of propagation of fast particles in matter;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2017-08
4. INFLUENCE OF INELASTIC COLLISIONS ON FAST ELECTRON BEAM ENERGY RELAXATION IN GAS;J MIN INST;2016
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