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首页> 外文期刊>Hyperfine Interactions: Journal Devoted to Research in the Border Regions of Solid State, Atomic and Nuclear Physics >Magnetic response and hyperfine magnetic fields at Fe sites of Sr3Fe2MO9 (M = Mo, Te, W, U) double-perovskites
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Magnetic response and hyperfine magnetic fields at Fe sites of Sr3Fe2MO9 (M = Mo, Te, W, U) double-perovskites

机译:Sr3Fe2MO9(M = Mo,Te,W,U)双钙钛矿的Fe部位的磁响应和超精细磁场

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We have studied the isostructural series of double-perovskites Sr3Fe2MO9 (M=Mo, Te, W, U) by Mossbauer spectrometry and AC susceptibility measurements. The hyperfine structure of Mossbauer spectra at room temperature is attributed to the presence of high spin state Fe3+ ions sensing both static and fluctuating magnetic hyperfine fields with different relative areas that depend on M. The magnetically split signal-indistinguishable from the background in the Mo compound spectrum-increases with the Fe-site disorder in the sequence Mo < U < Te < W. The spectra at 77 K demonstrate that the W-perovskite sample is already magnetically fully ordered, while the other three cations suggest ordering temperatures that increase from Te to U to Mo. At 4.2 K all the spectra are completely magnetically split and display hyperfine fields that range from 49 up to 53 T. Coincident with the X-ray and neutron diffraction results, the hyperfine parameters are consistent with Fe atoms centered in oxygen octahedral units, coordinated to different numbers of M-centered octahedra. The AC susceptibility response is χ&PRIME;(max) &AP; 3.5 x 10(-5) emu/g.Oe for the Mo compound and increases for the W, Te and U compounds with values of χ&PRIME;(max) 1.6 x 10(-4), 3.0 x 10(-4), and 9.4 x 10(-3) emu/g.Oe, respectively. The out-of-phase component, χ&DPRIME;, could only be detected for the U compound. Its frequency dependence displays a shift that denotes a spin-glass-like state arising from the chemical disorder.
机译:我们已经通过Mossbauer光谱法和AC磁化率测量研究了双钙钛矿Sr3Fe2MO9(M = Mo,Te,W,U)的同构系列。室温下Mossbauer光谱的超精细结构归因于高自旋态Fe3 +离子的存在,该离子检测具有不同相对面积(取决于M)的静态和波动磁场超精细磁场。与Mo化合物中的背景无磁区别的信号Fe位置的光谱以Mo

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