Line Shapes of Paramagnetic Resonances of Chromium in Ruby
- 3 August 1964
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 135 (3A) , A727-A739
- https://doi.org/10.1103/PhysRev.135.A727
Abstract
Using the formalism of the preceding paper, detailed numerical calculations are performed for the line shapes of paramagnetic resonances of chromium in ruby. Not only half-widths and intensities, but the fine details of the line shapes are accounted for, over a concentration range of about 0.01% to 1%. In particular it is found that (1) the dipolar line departs only slightly from the Lorentzian at the highest attainable concentrations, (2) the line is predominantly nondipolar at low concentrations, (3) no inference is possible from moments as to the magnitude or parametric behavior of intensities and half-widths, (4) neither exchange nor clustering of impurities affect the line shape at low concentrations, (5) exchange cannot narrow the (½,-½) transition. Various explanations for the observed residual width at vanishing concentrations are discussed in the light of these findings.Keywords
This publication has 30 references indexed in Scilit:
- Statistical Theory of Spin-Spin Interactions in SolidsPhysical Review B, 1964
- Microwave appraisal of maser crystalsBritish Journal of Applied Physics, 1961
- Chromium Ion Pair Interactions in the Paramagnetic Resonance Spectrum of RubyJournal of Applied Physics, 1961
- Paramagnetic Resonance of Exchange-CoupledPairs in RubyPhysical Review Letters, 1960
- The Magnetic Refrigerator for Temperatures below 1 kProceedings of the Physical Society. Section B, 1957
- Paramagnetic Resonance Spectrum of Ammonium Chromium AlumPhysical Review B, 1957
- Paramagnetic Fine Structure Spectrum ofin a Single Ruby CrystalPhysical Review B, 1956
- Electronic Structure ofCenters: Saturation of the Electron Spin ResonancePhysical Review B, 1953
- Exchange Narrowing in Paramagnetic ResonanceReviews of Modern Physics, 1953
- The Dipolar Broadening of Magnetic Resonance Lines in CrystalsPhysical Review B, 1948