Quadrupole coupling atIr193nuclei in iron

Quadrupole coupling atIr193nuclei in iron
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铁中 Ir193 原子核的四极耦合

DOI:
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发表时间:
1974
期刊:
影响因子:
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通讯作者:
D. A. Shirley
D. A. Shirley
中科院分区:
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文献类型:
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作者:
D. Salomon;D. A. Shirley

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M"ossbauer-source experiments on Fe($^{193}mathrm{Os}$) alloys with less than 0.1-at.% osmium show that quadrupole coupling persists in domains at high dilution, thereby confirming and extending the earlier NMR results of Aiga and Itoh on wall resonances and the M"ossbauer results of Wagner and Potzel on a more concentrated alloy. Arguments are presented to show that a M"ossbauer spectrum on a more concentrated alloy can yield a reasonably accurate value of ${e}^{2}qQ$, including its sign, even in the presence of substantial solute-solute-induced magnetic and quadrupole perturbations. For the ground state of $^{193}mathrm{Ir}$ in iron, this work yielded $frac{{e}^{2}qQ}{2h}=ensuremath{-}2.05(25)$ ${ensuremath{ u}}_{0}=119.6(3)$ MHz, and ${H}_{mathrm{hf}}=1481(4)$ kOe.
M"ossbauer-source experiments on Fe($^{193}mathrm{Os}$) alloys with less than 0.1-at.% osmium show that quadrupole coupling persists in domains at high dilution, thereby confirming and extending the earlier NMR results of Aiga and Itoh on wall resonances and the M"ossbauer results of Wagner and Potzel on a more concentrated alloy. Arguments are presented to show that a M"ossbauer spectrum on a more concentrated alloy can yield a reasonably accurate value of ${e}^{2}qQ$, including its sign, even in the presence of substantial solute-solute-induced magnetic and quadrupole perturbations. For the ground state of $^{193}mathrm{Ir}$ in iron, this work yielded $frac{{e}^{2}qQ}{2h}=ensuremath{-}2.05(25)$ ${ensuremath{ u}}_{0}=119.6(3)$ MHz, and ${H}_{mathrm{hf}}=1481(4)$ kOe.