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The Microdefects, Magnetic Properties and Electron Characters of Fe-Ga Alloys

机译:Fe-Ga合金的微碎片,磁性和电子特性

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The microdefects, magnetic magnetization curves and electric characters of Fe_(100-x)Ga_x (x=16, 17, 18, 19, 20) were investigated by the means of X-ray diffraction, VSM modular on PPMS, positron lifetime spectroscopy and electric paramagnetic resonance spectroscopy. The X-ray diffraction patterns show that the Fe_(100-x)Ga_x alloys is similar to that of α - Fe, but the peaks move to low angle slightly. The result indicates Ga entered the iron lattice and the larger radium lead to the changing of the patterns. Positron lifetime spectra show that the intensity of the defects of the Fe_(100-x)Ga_x alloys varies obviously with different Ga content. The magnetizing curves were measured to check the saturation magnetization at room temperature. The variations of saturation magnetization do not monotonic decrease as expect with the increasing of Ga. When x=18, the magnetization is maximum; the minimum is x=20 because of the lowest iron content. The electron paramagnetic resonance spectrum shows that the peaks become narrower when the x decreases from 20 to 16. These results indicate that the addition of Ga has effect on the 3d electrons of Fe.
机译:采用x射线衍射、PPMS上的VSM模块、正电子寿命谱和电顺磁共振谱研究了Fe_(100-x)Ga_x(x=16,17,18,19,20)的微缺陷、磁化曲线和电学性质。X射线衍射图显示,Fe_10;(100-X)Ga_X合金与α-Fe合金相似,但峰向低角度轻微移动。结果表明,镓进入铁晶格,较大的镭导致晶格花样的改变。正电子寿命谱表明,随着Ga含量的不同,Fe_100;x(100-x)Ga_x合金的缺陷强度有明显的变化。测量磁化曲线以检查室温下的饱和磁化强度。随着Ga的增加,饱和磁化强度的变化并不像预期的那样单调减小。当x=18时,磁化强度最大;由于铁含量最低,最小值为x=20。电子顺磁共振谱表明,当x从20减小到16时,峰变窄。这些结果表明,Ga的加入对Fe的3d电子有影响。

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