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通过系统地测量(La2/3Ca1/3)(Mn(3-x)/3Fex/3)O3x=0、0.1、0.2、0.3的体系样品的电阻率-温度关系以及一定温度下磁电阻率与磁场的关系,发现随x的变化其磁电阻率峰和电阻率峰均发生位移,磁电阻率峰值增大,并伴生磁电阻率峰展宽效应.作者认为由于Fe的替代,引起体系中Mn3+/Mn4+比率及磁矩的变化,加之外场对磁有序结构的调制作用,从而影响了Mn3+-OMn4+的双交换作用,最终导致磁电阻行为发生变化.

The temperature dependence of electrical resistance and magnetoresistance as well as field dependence of magnetoresistance at fixed temperature of
the (La2/3Ca1/3)(Mn(3-x)/3Fex/3)O3 (x=0, 0.1, 0.2, 0.3) system were systematically measured . It was found that when x increases, both the peak of the electrical resistivity and the peak of magnetoresistance move to
lower temperature. However the giant magnetoresistance (GMR) is increased and its cusp is broadened by Fe substitution. The authors suggested that the
variation of the proportion of Fe3+ ions leads to the changes of the ratios of Mn3+ to Mn4+ and magnetic moments while external magnetic
field modulates the magnetic ordered structure, so affects the ferromagnetic double exchange effect of the Mn3+--O--Mn4+. Finally, such phenomenon
changes the behavior of magnetoresistance.

参考文献

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