成分对锰联合取代的 La-Sr 锰矿的磁特性和非线性电特性的规律性影响及其机制

IF 0.48 Q4 Physics and Astronomy
V. K. Karpasyuk, A. G. Badelin, I. M. Derzhavin, S. Kh. Estemirova, D. I. Merkulov
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引用次数: 0

摘要

数据显示了锰矿的磁性能和非线性电流-电压特性的特殊性,这些磁性能和特性是由(\({text{Fe}}_{{text{0}}\{text{.5}}}}^{{text{3 + }}}}\{text{Sc}}_{{text{0}}{text{.5}}}}^{{text{3 + }}}}\)), (\({\text{Ni}}_{{0.5}}^{{2+}}{text\{Ge}}_{{0.5}}^{{4+}}\)),(({text{Zn}}_{{0.5}}^{{2+}}{text\{Ge}}_{{0.5}}^{{4+}}\)),(({text{Mg}}_{{text{0}}{text{.5}}}}^{{text/{2+}}}}{text{Ge}}_{{text/{0}}{text/{.5}}}}^{{text/{4+}}}}))离子对表示 La-Sr 体系中的锰。含有(Fe,Sc)、(Ni,Ge)和(Zn,Ge)的样品具有负微分电阻的S形截面,而(Mg,Ge)取代的锰矿具有电压稳定的特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Regularities and Mechanisms of Composition Influence on Magnetic and Nonlinear Electrical Characteristics of La–Sr Manganites with Combined Substitution for Manganese

Regularities and Mechanisms of Composition Influence on Magnetic and Nonlinear Electrical Characteristics of La–Sr Manganites with Combined Substitution for Manganese

The data are shown on magnetic properties and peculiarities of nonlinear current-voltage characteristics of manganites with substitution of (\({\text{Fe}}_{{{\text{0}}{\text{.5}}}}^{{{\text{3 + }}}}{\text{Sc}}_{{{\text{0}}{\text{.5}}}}^{{{\text{3 + }}}}\)), (\({\text{Ni}}_{{0.5}}^{{2 + }}{\text{Ge}}_{{0.5}}^{{4 + }}\)), (\({\text{Zn}}_{{0.5}}^{{2 + }}{\text{Ge}}_{{0.5}}^{{4 + }}\)), (\({\text{Mg}}_{{{\text{0}}{\text{.5}}}}^{{{\text{2 + }}}}{\text{Ge}}_{{{\text{0}}{\text{.5}}}}^{{{\text{4 + }}}}\)) ions pairs for manganese in La–Sr system. The samples containing (Fe,Sc), (Ni,Ge) and (Zn,Ge) have S-shaped sections of negative differential resistance, and (Mg,Ge)-substituted manganite exhibits the property of voltage stabilization.

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来源期刊
Bulletin of the Russian Academy of Sciences: Physics
Bulletin of the Russian Academy of Sciences: Physics Physics and Astronomy-Physics and Astronomy (all)
CiteScore
0.90
自引率
0.00%
发文量
251
期刊介绍: Bulletin of the Russian Academy of Sciences: Physics is an international peer reviewed journal published with the participation of the Russian Academy of Sciences. It presents full-text articles (regular,  letters  to  the editor, reviews) with the most recent results in miscellaneous fields of physics and astronomy: nuclear physics, cosmic rays, condensed matter physics, plasma physics, optics and photonics, nanotechnologies, solar and astrophysics, physical applications in material sciences, life sciences, etc. Bulletin of the Russian Academy of Sciences: Physics  focuses on the most relevant multidisciplinary topics in natural sciences, both fundamental and applied. Manuscripts can be submitted in Russian and English languages and are subject to peer review. Accepted articles are usually combined in thematic issues on certain topics according to the journal editorial policy. Authors featured in the journal represent renowned scientific laboratories and institutes from different countries, including large international collaborations. There are globally recognized researchers among the authors: Nobel laureates and recipients of other awards, and members of national academies of sciences and international scientific societies.
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