Mössbauer Effect: Principles and Applications |
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absorber absorption according alloys angular applicable arises associated average broadening Chapter charge density CM/SEC compared component compounds consider contribution corresponds counting coupling crystal crystal field cubic dependence determine difference direction discussed electric electrons emission emitted energy equal equation equivalent example excited experiment experimentally expression fact factor field gradient follows frequency function G. K. Wertheim gamma ray give given greater ground hf field increased indicate interaction ions iron atom isomer shift isotopes lattice Letters lifetime linewidth magnetic material means measured metallic modes moment Mössbauer effect motion neighbor nuclear nuclear levels nucleus observed obtained optical orbitals phonon Phys physics possible produced properties quadrupole splitting radiation range recoil recoil-free fraction relative resonant result s-electrons scattering shell shown shows similar solid spectrum structure symmetry temperature term thermal tion transition velocity vibrations wave York