66 research outputs found

    Internal magnetic fields at Hg and TI in ferromagnets

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    With the perturbed angular correlation method the hyperfine magnetic fields acting at 198Hg nuclei embedded in Fe, Co and Ni lattices are found to be -440 J: 105 kG, -370 :~ 78 kG and -86 J: 22 kG, respectively. The measured fields at 203T1 nuclei in Fe and Co lattices are -185 :e 70 kG and -90 ± 35 kG, respectively

    Estudos experimentais de estrutura nuclear pelo método da correlação angular

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    g factor of the 50-kev/sub 3/2/-state in /sup 223/ra and the internal magnetic fields at ra nuclei in ferromagnets

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    The y-y perturbed angular correlation of the 236-50-keV cascade in 223Ra has been investigated, yielding g(3/2-, 50 keV) =+0.28 ±0.04. The magnetic hyperfine fields experienced by Ra nuclei embedded in Ni, Co, and Fe lattices were found to be -30 ±10, -80 ±16, and -105 ±20 kOe, respectively

    g factor of the 50-kev/sub 3/2/-state in /sup 223/ra and the internal magnetic fields at ra nuclei in ferromagnets

    No full text
    The y-y perturbed angular correlation of the 236-50-keV cascade in 223Ra has been investigated, yielding g(3/2-, 50 keV) =+0.28 ±0.04. The magnetic hyperfine fields experienced by Ra nuclei embedded in Ni, Co, and Fe lattices were found to be -30 ±10, -80 ±16, and -105 ±20 kOe, respectively

    Internal magnetic fields at Hg and TI in ferromagnets

    Get PDF
    With the perturbed angular correlation method the hyperfine magnetic fields acting at 198Hg nuclei embedded in Fe, Co and Ni lattices are found to be -440 J: 105 kG, -370 :~ 78 kG and -86 J: 22 kG, respectively. The measured fields at 203T1 nuclei in Fe and Co lattices are -185 :e 70 kG and -90 ± 35 kG, respectively

    Measurement of the g-factor of the 3/sup -/ octopole vibrational state in /sup 208/pb

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    The nuclear g-factor of the collective 3- level at 2615 keV in 208pb has been measured by the perturbed angular correlation technique. The result of g(3-) = 0.58 ± 0.14 confirms the strongly collective character of the state
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