Interpretation of Channeled-Ion Energy-Loss Spectra
- 10 March 1969
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 179 (2) , 327-342
- https://doi.org/10.1103/physrev.179.327
Abstract
The energy-loss spectra produced in beams of energetic He and I ions transmitted through planar channels in thin Au monocrystals have been explained by a simple model in which the ions execute transverse anharmonic oscillations in the channel between a pair of adjacent planes of target atoms and in which the stopping power of the medium is a function of the distance of the ion from the crystal planes. A quantitative comparison of this model with recent experiments is made using a plane-averaged potential based on Moliere's approximation to the Thomas-Fermi screening function to describe the oscillatory motion. The stopping power is found to obey the same functional dependence on the coordinates, but with a doubled screening length. The parameters of the model may be deduced directly from the experimental data. For He in Au, these parameters agree well with those expected from Firsov's treatment of the interaction potential between neutral atoms. For I in Au, the high charge of the ion leads to parameters which differ significantly from Firsov's theory. The data also suggest that the energy dependence of the stopping power for channeled ions may be somewhat different from that for randomly directed ones.Keywords
This publication has 18 references indexed in Scilit:
- Potential-Energy and Differential-Stopping-Power Functions from Energy-Loss Spectra of Fast Ions Channeled in Gold Single CrystalsPhysical Review B, 1969
- A correspondence principle for the channelling of fast charged particlesPhilosophical Magazine, 1968
- The channelling of fast charged particles through crystalsPhysics Letters A, 1968
- Approximate Variational Solution of the Thomas-Fermi Equation for AtomsPhysical Review B, 1968
- Motion of Energetic Particles in CrystalsAnnual Review of Nuclear Science, 1967
- Influence of electron distribution on atomic interaction potentialsProceedings of the Physical Society, 1967
- Sensitivity of atomic interaction potentials to details of the electron distributionSolid State Communications, 1966
- Determination of Interatomic Potentials and Stopping Powers from Channeled-Ion Energy-Loss SpectraPhysical Review Letters, 1966
- Anisotropic Effects in Interactions of Energetic Charged Particles in a Crystal LatticePhysical Review Letters, 1965
- Dynamics of Radiation DamagePhysical Review B, 1960