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Эта публикация цитируется в 116 научных статьях (всего в 116 статьях)
СПЕЦИАЛЬНЫЙ ВЫПУСК
Решеточные и магнитные эффекты в легированных манганитах
Л. П. Горьков Институт теоретической физики им. Л. Д. Ландау РАН, отделение в г. Москве
Аннотация:
Показано, что механизм "двойного обмена" и неустойчивость Яна–Теллера позволяют объяснить низкотемпературные свойства слабо легированных соединений LaMnO3 в рамках модели зонного диэлектрика. Анализ процесса легирования La1–xAxMnO3 двухвалентными атомами A приводит к предположению, что дырки локализуются кулоновскими силами вблизи центров легирования. Поэтому физика этих соединений оказывается связанной с формированием проводящих кластеров вдоль таких заряженных центров. Экспериментальные результаты рассмотрены на основе теории перколяции. Обсуждается режим сосуществования двух фаз и возможность появления большой ферми-поверхности при высоких концентрациях. Некоторые из полученных результатов могут иметь отношение также к проблеме легирования в купратах.
DOI:
https://doi.org/10.3367/UFNr.0168.199806g.0665
Полный текст:
PDF файл (1438 kB)
Полный текст:
http://www.ufn.ru/ru/articles/1998/6/g/
Англоязычная версия:
Physics–Uspekhi, 1998, 41:6, 589–594
Реферативные базы данных:
Тип публикации:
Статья
PACS:
64.60.Ak, 71.70.Gm, 71.70.-d, 75.50.Pp Поступила: 1 мая 1998 г.
Образец цитирования:
Л. П. Горьков, “Решеточные и магнитные эффекты в легированных манганитах”, УФН, 168:6 (1998), 665–671; Phys. Usp., 41:6 (1998), 589–594
Образцы ссылок на эту страницу:
http://mi.mathnet.ru/ufn1486 http://mi.mathnet.ru/rus/ufn/v168/i6/p665
Citing articles on Google Scholar:
Russian citations,
English citations
Related articles on Google Scholar:
Russian articles,
English articles
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Klabukov A.A., Patrin G.S., Patrusheva T.N., Polyakova K.P., Velikanov D.A., Patrushev V.V., “Nanostructured Thin Films of the La0.7Sr0.3Mno3 Manganite Obtained Using the Extraction Pyrolytic Method”, J. Commun. Technol. Electron., 55:3 (2010), 352–357
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Sanina V.A. Golovenchits E.I. Zalesskii G. Scheglov M.P., “Magnetic Properties of Multiferroics-Semiconductors Eu1-Xcexmn2O5”, J. Phys.-Condes. Matter, 23:45 (2011), 456003
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Khokhlov V.A., Prokhorov A.Yu., Medvedev Yu.V., Nikolaenko Yu., Mukhin A., Pashchenko V.P., Levchenko G.G., Prokhorov V.G., Solin N.I., Svetchnikov V.L., Park J.S., Kim J.B., Lee G.Y.P., “Phase Separation in Strained Cation- and Anion-Deficient Nd0.52Sr0.48Mno3 Films”, Tech. Phys., 56:10 (2011), 1475–1486
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Е. И. Головенчиц, В. А. Санина, В. Г. Залесский, “Спин-волновые резонансы в мультиферроиках
Eu$_{0.8}$Ce$_{0.2}$Mn$_2$O$_5$ и EuMn$_2$O$_5$”, Письма в ЖЭТФ, 95:7 (2012), 429–434
; E. I. Golovenchits, V. A. Sanina, V. G. Zalesskii, “Spin-wave resonances in Eu$_{0.8}$Ce$_{0.2}$Mn$_2$O$_5$ and EuMn$_2$O$_5$ multiferroics”, JETP Letters, 95:7 (2012), 386–390 -
Volkov A.G., Povzner A.A., “Anomalous Influence of an External Magnetic Field on Spin Fluctuations in Magnetic Semiconductors with Strong P-D Hybridization and the Colossal Magnetoresistance Effect”, Phys. Solid State, 54:12 (2012), 2351–2356
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Sanina V.A., Golovenchits E.I., Zalesskii V.G., “Spin-Wave Excitations in Superlattices Self-Assembled in Multiferroic Single Crystals”, J. Phys.-Condes. Matter, 24:34 (2012), 346002
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Vekilov Yu.Kh., Mukovskii Ya.M., “Variable Range Hopping Conductivity in Manganites”, Solid State Commun., 152:13 (2012), 1139–1141
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Rykova A.I., Terekhov A.V., Cherny A.S., Khatsko E.N., Yeremenko A.V., Zaleski A., “Phase Magnetic Segregation and Magnetoresistive Properties in the Manganite Nanocompound P-La0.8Mn1.04O3.5”, Low Temp. Phys., 38:6 (2012), 529–533
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Gamzatov A.G., Kamilov I.K., “The Dependence of Percolation Threshold on Doping Degree in La1-X(K, Ag)(X)Mno3 Manganites”, J. Alloy. Compd., 513 (2012), 334–338
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S. I. Vorob’ev, A. L. Getalov, E. I. Golovenchits, E. N. Komarov, V. P. Koptev, S. A. Kotov, I. I. Pavlova, V. A. Sanina, G. V. Shcherbakov, “Investigation of the GdMn2O5 multiferroic by the μSR method”, Phys. Solid State, 55:3 (2013), 466
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A. Narjis, A. El kaaouachi, G. Biskupski, E. Daoudi, L. Limouny, S. Dlimi, M. Errai, A. Sybous, “Low temperature electrical resistivity of polycrystalline La0.67Sr0.33MnO3 thin films”, Materials Science in Semiconductor Processing, 2013
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N. M. Chebotaev, “Electron transport, magnetic state, and type of holes in (La0.8Ca0.2)1 − y Mn1 − z O3 + δ”, Phys. Solid State, 55:4 (2013), 748
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V.A. Sanina, E.I. Golovenchits, V.G. Zalesskii, B.K.h Khannanov, “Common features of low-temperature spin–charge separation and superlattice formation in multiferroic manganites and antiferromagnetic cuprates”, J. Phys.: Condens. Matter, 25:33 (2013), 336001
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I. A. Zobkalo, S. V. Gavrilov, V. A. Sanina, E. I. Golovenchits, “Temperature hysteresis of magnetic phase transitions in Tb1 − x Ce x Mn2O5 (x = 0, 0.20, 0.25)”, Phys. Solid State, 56:1 (2014), 51
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V. N. Krivoruchko, “The Griffiths phase and the metal-insulator transition in substituted manganites (Review Article)”, Low Temp. Phys, 40:7 (2014), 586
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V. A. Sanina, E. I. Golovenchits, B. Kh. Khannanov, “Temperature evolution of polar states in GdMn$_2$O$_5$ and
Gd$_{0.8}$Ce$_{0.2}$Mn$_2$O$_5$”, Письма в ЖЭТФ, 100:6 (2014), 451–456
; JETP Letters, 100:6 (2014), 407–412 -
B.K.h Khannanov, E.I. Golovenchits, V.A. Sanina, “Giant polarization and magnetic dynamics in GdMn2O5”, J. Phys.: Conf. Ser, 572 (2014), 012046
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Narjis A., El Kaaouachi A., Liang C.-T., El Idrissi H., Zatni A., Tata O., “Low Temperature Hopping in Granular Oxides La0.67Ca0.33Mno3 and La0.5Sr0.5Coo3”, Advances in Cryogenic Engineering, Vol 60, AIP Conference Proceedings, 1574, eds. Balachandran U., Amm K., Cooley L., Hartwig K., Osofsky M., Pamidi S., Reed R., Stautner W., Sumptio, Amer Inst Physics, 2014, 286–290
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S.M. Salili, A. Ataie, M.R. Barati, Z. Sadighi, “Characterization of mechano-thermally synthesized Curie temperature-adjusted La0.8Sr0.2MnO3 nanoparticles coated with (3-aminopropyl) triethoxysilane”, Materials Characterization, 106 (2015), 78
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B. Kh. Khannanov, V. A. Sanina, E. I. Golovenchits, M. P. Scheglov, “Room-temperature electric polarization induced by phase separation in multiferroic GdMn$_2$O$_5$”, Письма в ЖЭТФ, 103:4 (2016), 274–279
; JETP Letters, 103:4 (2016), 248–253 -
Vorob'ev S.I., Andrievskii D.S., Barsov S.G., Getalov A.L., Golovenchits E.I., Komarov E.N., Kotov S.A., Mishchenko A.Yu., Sanina V.A., Shcherbakov G.V., “SR study of Eu0.8Ce0.2Mn2O5 and EuMn2O5 multiferroics”, J. Exp. Theor. Phys., 123:6 (2016), 1017–1024
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Khannanov B.Kh., Sanina V.A., Golovenchits E.I., Scheglov M.P., “Electric polarization induced by phase separation in magnetically ordered and paramagnetic states of RMn2O5 (R=Gd, Bi)”, J. Magn. Magn. Mater., 421 (2017), 326–335
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Д. С. Андриевский, С. И. Воробьев, А. Л. Геталов, Е. И. Головенчиц, Е. Н. Комаров, С. А. Котов, В. А. Санина, Г. В. Щербаков, “Аномально сильная релаксация поляризации мюонов в магнитоупорядоченном и парамагнитном состояниях мультиферроика TbMnO$_3$”, Письма в ЖЭТФ, 106:5 (2017), 275–281
; D. S. Andrievskii, S. I. Vorob'ev, A. L. Getalov, E. I. Golovenchits, E. N. Komarov, S. A. Kotov, V. A. Sanina, G. V. Shcherbakov, “Anomalously strong relaxation of the polarization of muons in the magnetically ordered and paramagnetic states of the TbMnO$_3$ multiferroic”, JETP Letters, 106:5 (2017), 295–301 -
Sanina V.A., Khannanov B.Kh., Golovenchits E.I., “Magnetic dynamics of phase separation domains in GdMn2O5 and Gd0.8Ce0.2Mn2O5 multiferroics”, Phys. Solid State, 59:10 (2017), 1952–1960
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Mchalwat M., Ulrichs H., Walowski J., Ballani C., Shapoval O., IVioshnyaga V., Muenzenberg M., Samwer K., “Laser-Induced Changes of Nonlinear Electronic Transport Properties in La0.75Ba0.25Mno3 and (La0.6PR0.4)(0.67)Ca0.33Mno3”, J. Phys.-Condes. Matter, 30:4 (2018), 045701
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Sanina V.A., Khannanov B.Kh., Golovenchits E.I., Shcheglov M.P., “Frozen Superparaelectric State of Local Polar Regions in Gdmn2O5 and Gd0.8Ce0.2Mno5”, Phys. Solid State, 60:3 (2018), 537–548
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Kalmykova T., Vakula A., Nedukh S., Tarapov S., Belous A., Krivoruchko V., Suhov R., “Electron Spin Resonance and Magnetic Phase Transitions in Manganite Perovskite La0.78Sr0.22Mno3 Synthesized By the Solid-Phase Reaction Method”, Funct. Mater., 25:2 (2018), 241–245
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Sanina V.A., Khannanov B.Kh., Golovenchits E.I., Shcheglov M.P., “Electric Polarization in Ycro3 Induced By Restricted Polar Domains of Magnetic and Structural Natures”, Phys. Solid State, 60:12 (2018), 2532–2540
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Sanina V.A., Khannanov B.Kh., Golovenchits E.I., Shcheglov M.P., “Electric Polarization in Ercro3 Induced By Restricted Polar Domains”, Phys. Solid State, 61:3 (2019), 370–378
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