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1.


   
    Optical linear dichroism in the ab-plane of NdFe3(BO3)4 ferroborate / K. N. Boldyrev, M. Diab, I. A. Gudim, M. N. Popova // J. Exp. Theor. Phys. - 2023. - Vol. 137, Is. 4 : Special Issue dedicated to the 95th Anniversary of L. A. Prozorova. - P. 486-491, DOI 10.1134/S1063776123100011. - Cited References: 16. - This study was supported by the Ministry of Science and Higher Education (project no. FFUU-2022-0003) and partially (K.N. B., dichroism measurements) by the Russian Science Foundation (grant no. 19-72-10132P) . - ISSN 1063-7761. - ISSN 1090-6509
Аннотация: The high-resolution optical absorption spectra of NdFe3(BO3)4 single crystals have been recorded at temperatures from 4 to 40 K in the IR range of f–f transitions in a Nd3+ ion. Light linearly polarized at different angles to the C2 axes in the basal plane has been passed along the trigonal C3 axis. Below the temperature of magnetic moment ordering into a collinear antiferromagnetic structure (TN ≈ 30 K), dichroism, that is, the absorption versus polarization dependence, arises. The temperature and angular dependences of dichroism indicate that the magnetic moments of iron are directed along the C2 axes up to about 17 K, the number of domains with variously directed C2 axes being different. The mechanism of linear dichroism has been discussed. Below 17 K, a smooth transition to the helicoidal magnetic phase has been observed, with the collinear phase coexisting with the helicoidal one. Data presented in this article contradict the earlier concept of magnetic moments fluctuating in the low-temperature phase near the C2 axis within the ±10° interval.

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Публикация на русском языке Оптический линейный дихроизм в ab-плоскости ферробората NdFe3(BO3)4 [Текст] / К. Н. Болдырев, М. Диаб, И. А. Гудим, М. Н. Попова. - 6 с. // Журн. эксперим. и теор. физ. - 2023. - Т. 164 Вып. 4 : Специальный выпуск, посвященный 95-летию Л. А. Прозоровой. - С. 563-568

Держатели документа:
Institute of Spectroscopy, Russian Academy of Sciences, 108840, Troitsk, Moscow, Russia
Moscow Institute of Physics and Technology (State University), 141700, Dolgoprudnyi, Moscow oblast, Russia
Kirenskii Institute of Physics, Siberian Branch, Russian Academy of Sciences, 660036, Krasnoyarsk, Russia

Доп.точки доступа:
Boldyrev, K. N.; Diab, M.; Gudim, I. A.; Гудим, Ирина Анатольевна; Popova, M. N.
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2.


   
    Pressure–temperature phase diagram of multiferroic TbFe2.46Ga0.54(BO3)4 / A. Krylov, S. Krylova, I. Gudim [et al.] // Magnetochemistry. - 2022. - Vol. 8, Is. 6. - Ст. 59, DOI 10.3390/magnetochemistry8060059. - Cited References: 48. - The research of Krylov A. and Gudim I. was funded by RFBR, Krasnoyarsk Territory and Krasnoyarsk Regional Fund of Science, project number 20-42-240009. This work of Vtyurin A., Krylova S. was financially supported by the Russian Foundation for Basic Research and DFG (Deutsche Forschungsgemeinschaft) project number No 21-52-12018. The experiments were performed in the Krasnoyarsk Regional Center of Research Equipment of Federal Research Center “Krasnoyarsk Science Center SB RAS” . - ISSN 2312-7481
   Перевод заглавия: Фазовая диаграмма температура-давление мультиферроика TbFe2.46Ga0.54(BO3)4
Кл.слова (ненормированные):
ferroborate -- phase transitions -- multiferroics -- p–T phase diagram
Аннотация: The pressure–temperature phase diagram of the multiferroic TbFe2.46Ga0.54(BO3)4 was studied for hydrostatic pressures up to 7 GPa and simultaneously with temperatures up to 400 K by the Raman spectroscopy technique. The structural phase transition from the R32 phase to the P3121 phase was determined by observing the condensation of soft modes and the appearance of new lines. An increase in pressure leads to an increase in the temperature of the structural phase transition. These phases are stable over the entire investigated temperature and pressure range. No other phases have been found.

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Держатели документа:
Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk, 660036, Russian Federation
Ioffe Institute, Politekhnicheskaya 26, St. Petersburg, 194021, Russian Federation
Institute of Engineering Physics and Radio Electronics, Siberian Federal University, Krasnoyarsk, 660041, Russian Federation
State Key Laboratory of Material Processing and Die and Mould Technology, School of Materials Science and Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China

Доп.точки доступа:
Krylov, A. S.; Крылов, Александр Сергеевич; Krylova, S. N.; Крылова, Светлана Николаевна; Gudim, I. A.; Гудим, Ирина Анатольевна; Kitaev, Y.; Golovkina, E.; Zhang, H.; Vtyurin, A. N.; Втюрин, Александр Николаевич
}
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3.


   
    Phase transitions and p–T phase diagram of the multiferroic TbFe3(BO3)4 crystal / A. Krylov, M. Pavlovskiy, Y. Kitaev [et al.] // J. Raman Spectrosc. - 2022. - Vol. 53, Is. 6. - P. 1179-1187, DOI 10.1002/jrs.6341. - Cited References: 48. - Russian Foundation for Basic Research; RFBR, Krasnoyarsk Territory and Krasnoyarsk Regional Fund of Science, Grant/Award Number: 20-42-240009; Russian Foundation for Basic Research and DFG (Deutsche Forschungsgemeinschaft), Grant/Award Numbers: 448809307, 21-52-12018 . - ISSN 0377-0486. - ISSN 1097-4555
РУБ Spectroscopy
Рубрики:
BILBAO CRYSTALLOGRAPHIC SERVER
   RAMAN-SPECTRA

   HIGH-TEMPERATURE

Кл.слова (ненормированные):
ab initio calculation -- ferroborate -- multiferroic -- phase transitions -- p-T phase diagram
Аннотация: The structural phase transitions in multiferroic TbFe3(BO3)4 with change hydrostatic pressures and temperatures have been studied by Raman spectroscopy and calculation within density functional theory. Lattice dynamics calculations in the TbFe3(BO3)4 crystal in the 32 phase under various values of applied hydrostatic pressure (from 0 up to 5 GPa with 1 GPa step) were performed. The calculation performed in this work in a TbFe3(BO3)4 crystal showed that the applied pressure can increase the phase transition temperature. Raman spectra of the TbFe3(BO3)4 crystal have been investigated at simultaneously high temperature and high pressure (up to 5.14 GPa and 465 K). The appearance of a soft mode was observed with decreasing temperature at normal pressure. The manifestations of the interaction of the structural and magnetic order parameters in the range from 13 to 50 K were observed at normal pressure. With increasing pressure and a fixed temperature, recovery of the soft modes is also observed. The experimental p–T phase diagram of TbFe3(BO3)4 was established. An increase in pressure leads to an increase in the temperature of transition.

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Держатели документа:
Fed Res Ctr KSC SB RAS, Kirensky Inst Phys, Krasnoyarsk, Russia.
Siberian Fed Univ, Photon & Laser Technol, Krasnoyarsk, Russia.
Ioffe Inst, Politekhnicheskaya 26, St Petersburg, Russia.
Huazhong Univ Sci & Technol, State Key Lab Mat Proc & Die & Mould Technol, Wuhan, Peoples R China.
Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, Wuhan, Peoples R China.

Доп.точки доступа:
Krylov, A. S.; Крылов, Александр Сергеевич; Pavlovskiy, M. S.; Павловский, Максим Сергеевич; Kitaev, Y.; Gudim, I. A.; Гудим, Ирина Анатольевна; Andryshin, N. D.; Андрюшин, Никита Дмитриевич; Vtyurin, A. N.; Втюрин, Александр Николаевич; Jiang, Qinghui; Krylova, S. N.; Крылова, Светлана Николаевна; Russian Foundation for Basic ResearchRussian Foundation for Basic Research (RFBR); RFBR, Krasnoyarsk Territory and Krasnoyarsk Regional Fund of Science [20-42-240009]; Russian Foundation for Basic Research and DFG (Deutsche Forschungsgemeinschaft)German Research Foundation (DFG) [448809307, 21-52-12018]
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4.


   
    Raman scattering study of the rare-earth binary ferroborate Nd0.75Dy0.25Fe3(BO3)4 single crystal / A. Y. Glamazda, V. P. Gnezdilov, P. Lemmens [et al.] // Low Temp. Phys. - 2021. - Vol. 47, Is. 12. - P. 1011-1021, DOI 10.1063/10.0007074. - Cited References: 25. - A. Yu. Glamazda thanks Dr. A. V. Peschanskii for fruitful discussions. P. Lemmens acknowledges funding by the DFG Excellence Cluster Quantum Frontiers, EXC 2123-390837967, DFG Le967/16-1, and DFG-RTG 1952/1 . - ISSN 1063-777X. - ISSN 1090-6517
РУБ Physics, Applied
Рубрики:
MAGNETIC PHASE-TRANSITIONS
   SPIN REORIENTATION

Аннотация: We report comprehensive Raman scattering measurements on a single crystal of binary ferroborate Nd0.75Dy0.25Fe3(BO3)4 in the temperature range of 7–295 K with 532 nm (18797 cm−1) laser excitation. The performed analysis of the polarized Raman spectra revealed the bands assigned to phonon, magnetic, and electronic excitations. The temperature evolution of these quasiparticle excitations has allowed us to ascertain the intricate coupling and interplay between lattice, magnetic, and electronic degrees of freedom. Analysis of the measured Raman spectra made it possible to identify all A1 and E phonon modes predicted by the group-theoretical analysis. The splitting energies between the LO and TO components of the polar E phonons were determined. Below the magnetic ordering temperature of the Fe sublattice, TN, we have revealed a multiple peaked two-magnon excitation. Analyzing the temperature evolution of low-frequency modes in the spectra, we also identified modes that are associated with electronic transitions between the crystal field levels of the Nd3+ ions with ground-state 4I9/2 and of the Dy3+ ions with ground-state 6H15/2 multiplets. In addition to the already known temperatures of magnetic transitions, analysis of the temperature behavior of low-frequency phonon and electronic excitations made it possible to establish a temperature T* = 100 K, presumably associated with local distortions of the crystal lattice. The presence of this temperature is confirmed by our ultrasonic study. A group of intense bands observed in the frequency range 1700–2200 cm−1 has been associated with the mixed low-lying electronic Raman transitions 4I9/2→4I11/2 and the high-energy luminescence ones 4G5/2+2G7/2→4I9/2 for the Nd3+ ion.

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Публикация "на русском языке" Raman scattering study of the rare-earth binary ferroborate Nd0.75Dy0.25Fe3(BO3)4 single crystal [Текст] / A. Yu. Glamazda, V. P. Gnezdilov, P. Lemmens [et al.] // Физ. низких температур. - 2021. - Т. 47 Вып. 12.- С.1107-1118 ; Fiz. Nizk. Temp.

Держатели документа:
Natl Acad Sci Ukraine, B Verkin Inst Low Temp Phys & Engn, UA-61103 Kharkiv, Ukraine.
Kharkov Natl Univ, UA-61022 Kharkiv, Ukraine.
TU Braunschweig, Inst Condensed Matter Phys, D-38106 Braunschweig, Germany.
TU Braunschweig, Lab Emerging Nanometrol, D-38106 Braunschweig, Germany.
TU Braunschweig, Int Grad Sch Metrol, D-38106 Braunschweig, Germany.
Russian Acad Sci, Siberian Branch, LV Kirenskii Inst Phys, Krasnoyarsk 660036, Russia.

Доп.точки доступа:
Glamazda, A. Yu.; Gnezdilov, V. P.; Lemmens, P.; Zvyagina, G. A.; Gudim, I. A.; Гудим, Ирина Анатольевна; DFG Excellence Cluster Quantum FrontiersGerman Research Foundation (DFG) [EXC 2123-390837967, DFG Le967/16-1, DFG-RTG 1952/1]
}
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5.


    Gavrichkov, V. A.
    Nd-Fe exchange interaction in Nd ferroborate with multiferroic properties under optical pumping / V. A. Gavrichkov, A. V. Malakhovskii // International conference "Functional materials" : book of abstracts / ed. V. N. Berzhansky ; org. com. S. G. Ovchinnikov [et al.]. - Simferopol, 2021. - P. 253-254. - Библиогр.: 1 назв. - The reported study was supported by the grant RFFI 19-02-00034 and the Russian Foundation for Basic Research, Government of Krasnoyarsk Territory, and Krasnoyarsk Regional Fund of Science according to the research project ”Studies of superexchange and ICFM’2021 254 electron-phonon interactions in correlated systems as a basis for searching for promising functional materials No. 20-42-240016

Материалы конференции,
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Доп.точки доступа:
Berzhansky, V. N. \ed.\; Бержанский, Владимир Наумович; Ovchinnikov, S. G. \org. com.\; Овчинников, Сергей Геннадьевич; Malakhovskii, A. V.; Малаховский, Александр Валентинович; Ovchinnikov, S. G.; Гавричков, Владимир Александрович; "Functional materials", International conference(2021 ; Oct. 4-8 ; Alushta, Russia); Крымский федеральный университет имени В.И. Вернадского
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6.


    Gavrichkov, V. A.
    Effect of optical f - f excitations on the Nd-Fe exchange interaction in Nd ferroborate with multiferroic properties / V. A. Gavrichkov, A. V. Malakhovskii, S. G. Ovchinnikov // Phys. Rev. B. - 2021. - Vol. 104, Is. 6. - Ст. 064445, DOI 10.1103/PhysRevB.104.064445. - Cited References: 28. - The reported study was supported by the RFBR Grant 19-02-00034. V.A.G. is also grateful to the Russian Foundation for Basic Research, Government of Krasnoyarsk Territory, and Krasnoyarsk Regional Fund of Science according to the research project "Studies of superexchange and electron-phonon interactions in correlated systems as a basis for searching for promising functional materials" No. 20-42-240016 . - ISSN 2469-9950. - ISSN 2469-9969
РУБ Materials Science, Multidisciplinary + Physics, Applied + Physics, Condensed Matter
Рубрики:
LOCAL MAGNETIC-PROPERTIES
   SINGLE-CRYSTAL

   EXCITED-STATES

Аннотация: We considered the effect of optical pumping at the f−f transitions frequency on d−f superexchange in the rare-earth antiferromagnetic ferroborate Nd0.5Gd0.5Fe3(BO3)4 between Nd3+ ions in the excited states of the 4G5/2, 2G7/2, and Fe3+ in the ground state 6A1. In the ferroborate, d−f superexchange is directly related to the strong magnetoelectric coupling observed in the ground state of the material. We show that under optical pumping at the frequency of f−f transitions 4I9/2↔(4G5/2+2G7/2) in the Nd3+ ion, the nature of the d−f interaction changes to FM. The phenomena can be explained by the occupation of the excited Nd3+ “spin pure” states with spin 1/2, or their mixing to the optically excited states with spin 3/2 due to the spin-orbit interaction. Near optically excited ions Nd3+, magnetic frustrations change from FM ordering under the d−f AFM interaction to AFM ordering under the FM interaction in the basal hexagonal plane.

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Держатели документа:
Kirensky Inst Phys, Akademgorodok 50,Bld 38, Krasnoyarsk 660036, Russia.

Доп.точки доступа:
Malakhovskii, A. V.; Малаховский, Александр Валентинович; Ovchinnikov, S. G.; Овчинников, Сергей Геннадьевич; Гавричков, Владимир Александрович; RFBRRussian Foundation for Basic Research (RFBR) [19-02-00034]; Russian Foundation for Basic ResearchRussian Foundation for Basic Research (RFBR); Krasnoyarsk Regional Fund of Science [20-42-240016]; Government of Krasnoyarsk Territory
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7.


   
    Raman scattering study of the rare-earth binary ferroborate Nd0.75Dy0.25Fe3(BO3)4 single crystal / A. Yu. Glamazda, V. P. Gnezdilov, P. Lemmens [et al.] // Физ. низких температур. - 2021. - Т. 47, Вып. 12. - С. 1107-1118 ; Fiz. Nizk. Temp. - Cited References: 26. - A. Yu. Glamazda thanks to Dr. A. V. Peschanskii for fruitful discussions. P. Lemmens acknowledges funding by the DFG Excellence Cluster Quantum Frontiers, EXC 2123-390837967, DFG Le967/16-1, and DFG-RTG 1952/1 . - ISSN 0132-6414
   Перевод заглавия: Раманівська спектроскопія монокристала рідкісноземельного бінарного фероборату Nd0,75Dy0,25Fe3(BO3)4
Кл.слова (ненормированные):
ferroborates -- Raman spectroscopy -- luminescence -- фероборати -- раманівськa спектроскопія -- люмінесценція
Аннотация: We report comprehensive Raman scattering measurements on a single crystal of binary ferroborate Nd0.75Dy0.25Fe3(BO3)4 in the temperature range of 7–295 K with 532 nm (18797 cm–1) laser excitation. The performed analysis of the polarized Raman spectra revealed the bands assigned to phonon, magnetic, and electronic excitations. The temperature evolution of these quasiparticle excitations has allowed us to ascertain the intricate coupling and interplay between lattice, magnetic, and electronic degrees of freedom. Analysis of the measured Raman spectra made it possible to identify all A1 and Е phonon modes of predicted by the group-theoretical analysis. The splitting energies between the LO and TO components of the polar E phonons were determined. Below the magnetic ordering temperature of the Fe sublattice, TN, we have revealed a multiple peaked two-magnon excitation. Analyzing the temperature evolution of low-frequency modes in the spectra, we also identi-fied modes that are associated with electronic transitions between the crystal field levels of the Nd3+ ions with ground-state 4I9/2 and of the Dy3+ ions with ground-state 6H15/2 multiplets. In addition to the already known temperatures of magnetic transitions, analysis of the temperature behavior of low-frequency phonon and electronic excitations made it possible to establish a temperature T * = 100 K, presumably associated with local distortions of the crystal lattice. The presence of this temperature is confirmed by our ultrasonic study. A group of intense bands observed in the frequency range of 1700–2200 cm–1 has been associated with the mixed low-lying electronic Raman transitions 4I9/2→4I11/2 and the high-energy luminescence ones 4G5/2+2G7/2→4I9/2 for the Nd3+ ion.
Представлено результати раманівських досліджень монокристала бінарного фероборату Nd0,75Dy0,25Fe3(BO3)4 при лазерному збудженні 532 нм (18797 см–1) в діапазоні температур 7–295 K. Аналіз отриманих поляризованих раманівських спектрів виявив смуги, які були віднесені до фононних, магнітних та електронних збуджень. На підставі температурної еволюції смуг встановлено складний зв’язок та взаємодію між гратковими, магнітними й електронними ступенями свободи. Аналіз отриманих спектрів дозволив виявити всі А1 та Е фононні моди, передбачені груповим теоретичним аналізом. Визначено енергії розщеплення між LO і TO компонентами полярних E-фононів. Нижче температури магнітного впорядкування Fe-підгратки, TN, виявлена складна багатопікова смуга, яка віднесена до двомагнонного збудження.Температурна залежність низькочастотних раманівських спектрів виявила моди, пов’язані з електронними переходами між рівнями мультиплетів 4I9/2 основного стану Nd3+ та 6H15/2 основного стану Dy3+, отримані в результаті дії кристалічного поля. Аналіз температурної поведінки низькочастотних фононних та електронних збуджень дозволив встановити аномалію поблизу T * = 100 K, ймовірно, пов’язану з локальними спотвореннями кристалічної гратки. Наявність цієї температури підтверджується ультразвуковими дослідженнями. Група інтенсивних смуг, що спостерігається в раманівському спектрі в діапазоні частот 1700–2200 см–1, пов’язана зі змішаними низько розташованими електронними раманівськими 4I9/2 → 4I11/2 та високоенергетичними люмінесцентними 4G5/2 + 2G7/2→4I9/2 переходами в Nd3+ іоні.

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Переводная версия Raman scattering study of the rare-earth binary ferroborate Nd0.75Dy0.25Fe3(BO3)4 single crystal [Текст] / A. Y. Glamazda, V. P. Gnezdilov, P. Lemmens [et al.] // Low Temp. Phys. - 2021. - Vol. 47 Is. 12.- P.1011-1021

Держатели документа:
B. Verkin Institute for Low Temperature Physics and Engineering, National Academy of Sciences of Ukraine, Kharkiv, 61103, Ukraine
V. N. Karazin Kharkiv National University, Kharkiv, 61022, Ukraine
Institute for Condensed Matter Physics, TU-Braunschweig, Braunschweig, 38106, Germany
Laboratory for Emerging Nanometrology, International Graduate School of Metrology, TU-Braunschweig, Braunschweig, 38106, Germany
L. V. Kirenskii Institute of Physics, Siberian Branch of the Russian Academy of Sciences, Krasnoyarsk, 660036, Russian Federation

Доп.точки доступа:
Glamazda, A. Yu.; Gnezdilov, V. P.; Lemmens, P.; Zvyagina, G. A.; Gudim, I. A.; Гудим, Ирина Анатольевна

}
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8.


    Gudim, I. A.
    Melt‒solution synthesis and magnetic properties of SmFe2.8Sc0.2(BO3)4 ferroborate / I. A. Gudim, E. V. Eremin, V. L. Temerov // Crystallogr. Rep. - 2020. - Vol. 65, Is. 2. - P. 307-308, DOI 10.1134/S1063774520020108. - Cited References: 7. - This study was supported by joint grant no. 18-42240011_a of the Russian Foundation for Basic Research and the Krasnoyarsk Territory Government Foundation for scientific-technical support. . - ISSN 1063-7745. - ISSN 1562-689X
РУБ Crystallography

Аннотация: Single crystals of SmFe2.8Sc0.2(BO3)(4) ferroborates are grown in melt-solutions based on bismuth trimolybdate. The magnetic properties of grown single crystals are studied. The presence of long-range magnetic order in these crystals is found.

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Публикация на русском языке Гудим, Ирина Анатольевна. Раствор-расплавный синтез и магнитные свойства ферробората SmFe2.8Sc0.2(BO3)4 [Текст] / И. А. Гудим, Е. В. Еремин, В. Л. Темеров // Кристаллография. - 2020. - Т. 65 Вып. 2. - С. 311-313

Держатели документа:
Russian Acad Sci, Kirensky Inst Phys, Fed Res Ctr, Krasnoyarsk Sci Ctr,Siberian Branch, Krasnoyarsk 660036, Russia.
Siberian Fed Univ, Krasnoyarsk 660041, Russia.
Siberian State Univ Sci & Technol, Krasnoyarsk 660037, Russia.

Доп.точки доступа:
Eremin, E. V.; Еремин, Евгений Владимирович; Temerov, V. L.; Темеров, Владислав Леонидович; Гудим, Ирина Анатольевна; Russian Foundation for Basic ResearchRussian Foundation for Basic Research (RFBR) [18-42240011_a]; Krasnoyarsk Territory Government Foundation
}
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9.


    Titova, Veronika.
    Growth of single crystals of trigonal ferroborate Ho0,5Nd0,5Fe3(BO3)4 with the huntite structure depending on the crystallochemical growth conditions / V. R. Titova, I. A. Gudim // Химия, физика, биология, математика: теоретические и прикладные исследования : сб. статей по материалам XXXIV междун. науч.-практич. конф. - 2020. - Т. 3 (24). - P. 123-129

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Источник статьи
Держатели документа:
Kirensky Institute of Physics
Sibirian Federal University

Доп.точки доступа:
Gudim, I. A.; Гудим, Ирина Анатольевна; Химия, физика, биология, математика: теоретические и прикладные исследования, международная научно-практическая конференция(34 ; 2020 ; 17 марта ; Москва)
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    Eremin, E. V.
    Magnetic properties of Eu1-xLaxFe3(BO3)4 ferroborate / E. V. Eremin, I. A. Gudim, V. L. Temerov // Euro-asian symposium "Trends in magnetism" (EASTMAG-2019) : Book of abstracts / чл. конс. ком.: S. G. Ovchinnikov, N. V. Volkov [et al.] ; чл. прогр. ком. D. M. Dzebisashvili [et al.]. - 2019. - Vol. 2. - Ст. I.P5. - P. 144-145. - Cited References: 7. - This study was supported by the Russian Foundation for Basic Research (RFBR) according to the research projects No. 18-02-00696_a. . - ISBN 978-5-9500855-7-4
   Перевод заглавия: Магнитные свойства ферробората Eu1-xLaxFe3(BO3)4)

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Держатели документа:
Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk, Russia

Доп.точки доступа:
Ovchinnikov, S. G. \чл. конс. ком.\; Овчинников, Сергей Геннадьевич; Volkov, N. V. \чл. конс. ком.\; Волков, Никита Валентинович; Dzebisashvili, D. M. \чл. прогр. ком.\; Дзебисашвили, Дмитрий Михайлович; Gudim, I. A.; Гудим, Ирина Анатольевна; Temerov, V. L.; Темеров, Владислав Леонидович; Еремин, Евгений Владимирович; Российская академия наук; Уральское отделение РАН; Институт физики металлов им. М. Н. Михеева Уральского отделения РАН; Уральский федеральный университет им. первого Президента России Б.Н. Ельцина; Российский фонд фундаментальных исследований; Euro-Asian Symposium "Trends in MAGnetism"(7 ; 2019 ; Sept. ; 8-13 ; Ekaterinburg); "Trends in MAGnetism", Euro-Asian Symposium(7 ; 2019 ; Sept. ; 8-13 ; Ekaterinburg)
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