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DC current effect on the magnetic phase and transport properties of polycrystalline La _(0.7)Ca _(0.3)MnO _3

机译:直流电流对多晶La_(0.7)Ca_(0.3)MnO_3磁相和输运性能的影响

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摘要

The influence of DC current on the resistivity and phase transition of polycrystalline La _(0.7)Ca _(0.3)MnO _3 has been investigated. The specific heat measurement found that charge carriers and ferromagnetic spin-wave contributions were changed after applied DC current. Applying high electric fields leads to the formation of ferromagnetic regions. The resistivity drops abruptly once the percolating current path is established. As current through the sample disappears, the larger ferromagnetic (FM) clusters, however, remain and are frozen in giving a measurable contribution to the specific heat of the system. The larger clusters should give rise to the value of spin-wave stiffness constant (D), as it is expected to increase the strength of the ferromagnetic coupling. The metallic ferromagnetic regions would make the charge carrier delocalization and attribute to specific heat linear term γ.
机译:研究了直流电流对多晶La_(0.7)Ca_(0.3)MnO_3电阻率和相变的影响。比热测量发现,在施加直流电流后,电荷载流子和铁磁自旋波的贡献发生了变化。施加高电场会导致铁磁区的形成。一旦建立渗流电流路径,电阻率就会突然下降。然而,随着通过样品的电流消失,较大的铁磁(FM)团簇仍然存在并被冻结,从而对系统的比热产生可测量的贡献。较大的团簇应产生自旋波刚度常数(D)的值,因为它有望增加铁磁耦合的强度。金属铁磁区将使电荷载流子离域,并归因于比热线性项γ。

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