Direct Monte Carlo simulation of scattering processes of keV conversion electrons in a radioactive source
Author:
Publisher
Elsevier BV
Subject
Instrumentation,Nuclear and High Energy Physics
Reference21 articles.
1. Direct Monte Carlo simulation of scattering processes of kV electrons in aluminum; comparison of theoretical N(E) spectra with experiment
2. A study of electron penetration in solids using a direct Monte Carlo approach
3. Simple generalized oscillator strength density model applied to the simulation of keV electron‐energy‐loss distributions
4. Monte Carlo calculations of low energy electron backscatter coefficients
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1. Experimental investigation of the 9.2 and 24.3 keV nuclear transitions in $$^{227}$$Th;The European Physical Journal A;2021-10
2. Various Applications of Precision Low-Energy Nuclear Electron Spectrometry in the KATRIN Tritium Neutrino Project;Physics of Particles and Nuclei;2019-11
3. An experimental investigation of the 15.1 keV M1 + E2 nuclear transition in 227Th from the $\beta^{-}$ decay of 227Ac;The European Physical Journal A;2019-08
4. The experimental investigation of weak effects in the KLL Auger electron spectrum of Zr and Nb generated in radioactive decay;Journal of Electron Spectroscopy and Related Phenomena;2018-12
5. The KLM + KLN Auger electron spectrum of rubidium in different matrices;Journal of Physics B: Atomic, Molecular and Optical Physics;2017-07-03
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