超化学计量锰对磁阻陶瓷电子子系统电荷和自旋极化的影响

N. Liedienov, V. Prokopenko, A. Pashchenko, V. Sycheva, A. Voznyak, D. Tatarchuk, Y. Didenko, I. Fesych, A. O. Pilipenko
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引用次数: 0

摘要

采用x射线衍射法、热重法、电阻法、磁电阻法和介电光谱法研究了浓度为$\boldsymbol{x}=0-0.3$的$\mathbf{La}_{0.7}\mathbf{Ca}_{0.3-\boldsymbol{x}}\mathbf{K}_{\boldsymbol{x}}\mathbf{Mn}_{1+\boldsymbol{x}}\mathbf{O}_{3-\delta}$陶瓷的结构、电阻、磁电阻和介电性能。研究表明,真正的钙钛矿结构中含有可变价态的锰离子和空位型的点缺陷。在超高频范围内,随着稀土锰的超化学计量浓度的增加,介电常数$\varepsilon^{\prime}$也随之增加。在室温范围内,确定了具有较高磁阻值和$\varepsilon^{\prime}$的稀土锰矿石的最佳组成。超化学计量锰导致电子子系统的自旋和电荷极化增加。
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Influence of Superstoichiometric Manganese on the Charge and Spin Polarization of Electron Subsystem of Magnetoresistance Ceramics
The structural, resistance, magnetoresistance and dielectric properties of $\mathbf{La}_{0.7}\mathbf{Ca}_{0.3-\boldsymbol{x}}\mathbf{K}_{\boldsymbol{x}}\mathbf{Mn}_{1+\boldsymbol{x}}\mathbf{O}_{3-\delta}$ ceramics with a concentration of $\boldsymbol{x}=0-0.3$ were investigated by X-ray diffraction, thermogravimetric, resistance, magnetoresistance and dielectric spectroscopy methods. It has been shown that a real perovskite structure contains variable valence of manganese ions as well as point defects of the vacancy type. It has been established that an increase in the dielectric permittivity $\varepsilon^{\prime}$ within the ultra high frequency range is observed with increase in concentration of superstoichiometric manganese in rare-earth manganites. The optimal composition of the rare-earth manganite with the high values of the magnetoresistance and $\varepsilon^{\prime}$ within the room temperature range is determined. Superstoichiometric manganese leads to an increase in the spin and charge polarization of the electronic subsystem.
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