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- W2022129541 abstract "Mossbauer-effect measurements on the cubic intermetallic rare-earth dihydrides are reported utilizing the 86.8-keV and the 80.6-keV ${2}^{+}$ ensuremath{rightarrow}${0}^{+}$ $ensuremath{gamma}$ transitions of $^{160}mathrm{Dy}$ and $^{166}mathrm{Er}$, respectively. All studies were carried out at liquid-helium temperatures on pure and diluted (with Y or Sc) paramagnetic samples. It is found that in the more concentrated alloys spin-spin ($4fensuremath{-}4f$) relaxation rates at 4.2 K are sufficiently fast to allow for the use of these systems as narrow-single-line Mossbauer sources and absorbers. Measurements on highly dilute $^{160}mathrm{Dy}$ and $^{166}mathrm{Er}$ impurities in Y${mathrm{H}}_{2}$ reveal the resolved paramagnetic hyperfine structure of a ${ensuremath{Gamma}}_{7}$ crystalline electric field (CEF) ground state in both cases. The results are discussed in terms of CEF theory." @default.
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- W2022129541 date "1975-12-01" @default.
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- W2022129541 title "Dy160andEr166Mössbauer studies of concentrated and diluted rare-earth dihydrides: Single-line compounds and crystal-field effects" @default.
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- W2022129541 doi "https://doi.org/10.1103/physrevb.12.4805" @default.
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