首页> 外文会议>International Conference on the Applications of the Mossbauer Effect(ICAME 2003); 20030921-25; Muscat(OM) >Hyperfine and Structural Properties of the Mechanically Alloyed (FeMn)_(30)Cu_(70) System
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Hyperfine and Structural Properties of the Mechanically Alloyed (FeMn)_(30)Cu_(70) System

机译:机械合金化(FeMn)_(30)Cu_(70)体系的超细结构性质

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Nanostructured Fe_(15)Mn_(15)Cu_(70) alloys were prepared by high-energy ball milling. The alloying process spans grinding times from 15 minutes to 114 hours. The Moessbauer isomer shifts are analyzed at 77 K and 4.2 K as a function of the average lattice parameter determined from Rietveld analysis of the X-ray diffraction data. Evidence of two different iron sites at 77 K to account for the asymmetry of the Moessbauer spectra is discussed by correlating hyperfine and structural parameters. This leads to conclude the occurrence of a low-spin to high-spin partial transition of iron at a critical volume of around 50 A~3 at 77 K, supporting theoretical predictions.
机译:通过高能球磨制备了纳米结构的Fe_(15)Mn_(15)Cu_(70)合金。合金化过程的研磨时间从15分钟到114小时不等。根据从X射线衍射数据的Rietveld分析确定的平均晶格参数,在77 K和4.2 K处分析Moessbauer异构体的位移。通过关联超精细和结构参数,讨论了在77 K处两个不同铁位点的证据,以解释Moessbauer谱的不对称性。可以得出结论,在77 K时,铁的低旋向高旋局部过渡的发生在大约50 A〜3的临界体积下,支持了理论预测。

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