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March 5, 20260 citationsOpen Access

Spectral Characteristics of Planar Channeling Radiation by 20-800 MeV Electrons in a Thin Silicon Carbide

ABAzadegan B.DSDabagov S.B.

Key Points

  • The research aims to analyze the spectral properties of channeling radiation produced by electrons in silicon carbide.
  • Calculated continuum potentials for different planes of 4H silicon carbide
  • Applied quantum mechanics to determine transverse electron states
  • Used classical calculations for spectral distributions at energies above 100 MeV
  • Compared classical and quantum results for validation.
  • Identified new features of channeling radiation in 4H silicon carbide
  • Predicted transition energies and linewidths for electron states
  • Confirmed classical calculations align with quantum mechanics at high energies.

Abstract

Spectral distributions of channeling radiation by 20800 MeV electrons in different planes of a thin 4H polytype silicon carbide crystal is presented. We demonstrated that channeling in 4H SiC with hexagonal structure has some new features not available in other structures. Using Doyle-Turner approximation to the atomic scattering factor and taking in to account thermal vibrations of atoms, the continuum potentials for different planes of 4H polytype SiC single crystal were calculated. In the frame of quantum mechanic, the theory of channeling radiation has been applied to calculate the transverse electron states in the continuum potential of the planes and to study transition energies, linewidths, depth dependence for population of quantum states and spectral radiation distributions. At electron energies higher than 100 MeV the spectral distributions of radiation are calculated by classical calculations and successfully compared with quantum mechanics solutions. Specific properties of planar channeling radiation in 4H polytype SiC are discussed.

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Cite This Study

B. et al. (2010) studied this question.

synapsesocial.com/papers/69a91da8d6127c7a504c0a35https://doi.org/10.15161/oar.it/c8bn3-am959
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