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1.


   
    Remagnetization of ε-Fe2O3 nanoparticles in a pulse field / A. A. Krasikov [et al.] // VI Euro-Asian Symposium "Trends in MAGnetism" (EASTMAG-2016) : abstracts / ed.: O. A. Maksimova, R. D. Ivantsov. - Krasnoyarsk : KIP RAS SB, 2016. - Ст. P9.4. - P. 390. - References: 4 . - ISBN 978-5-904603-06-9
Кл.слова (ненормированные):
ε-Fe2O3 -- nanoparticles -- coercivity -- remagnetization -- superparamagnetic relaxation


Доп.точки доступа:
Krasikov, A. A.; Красиков, Александр Александрович; Balaev, D. A.; Балаев, Дмитрий Александрович; Shaikhutdinov, K. A.; Шайхутдинов, Кирилл Александрович; Dubrovskiy, A. A.; Дубровский, Андрей Александрович; Popkov, S. I.; Попков, Сергей Иванович; Balaev, A. D.; Балаев, Александр Дмитриевич; Yakushkin, S. S.; Якушкин С. С.; Bukhtiyarova, G. A.; Бухтиярова Г. А.; Martyanov, O. N.; Мартьянов О.Н.; Poperechny, I. S.; Поперечный И. С.; Raikher, Yu.L.; Euro-Asian Symposium "Trends in MAGnetism"(6 ; 2016 ; Aug. ; 15-19 ; Krasnoyarsk); "Trends in MAGnetism", Euro-Asian Symposium(6 ; 2016 ; Aug. ; 15-19 ; Krasnoyarsk); Институт физики им. Л.В. Киренского Сибирского отделения РАН

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2.


    Mironov, V. L.
    Dielectric model of a mineral arctic soil thawed and frozen at 0.05-15 GHz / V. L. Mironov, I. P. Molostov, V. V. Scherbinin // International Siberian Conference on Control and Communications (SIBCON) (MAY 21-23, 2015, Omsk, RUSSIA) : IEEE, 2015. - P2684-2687. - Cited References:11 . - ISBN 978-1-4799-7103-9
Кл.слова (ненормированные):
dielectric model -- temperature dependence -- dielectric relaxation -- soil -- Arctic regions -- remote sensing
Аннотация: The dielectric model for an arctic soil both thawed and frozen has been developed. The model is based on the soil dielectric measurements carried out in the ranges of gravimetric moisture from 0.01 to 0.43 g/g, dry soil density from 1.25 to 1.83 g/cm(3), and temperature from 25 to -30 degrees C (cooling run), in the frequency range 0.05-15 GHz. To fit the results of measurements of the soil complex dielectric constant as a function of soil moisture and wave frequency, the refractive mixing dielectric model in conjunction with the Debye multi-relaxation equations were applied. As a result, the spectroscopic parameters of dielectric relaxations for the bound, transient bound, and unbound soil water components were derived, being further complimented with the thermodynamics parameters to ensure a complete set of parameters of the temperature dependent multi-relaxation spectroscopic dielectric model for moist soils proposed. To calculate complex dielectric constant of soil, the following input variables have to be assigned: 1) density of dry soil, 2) gravimetric moisture, 3) wave frequency, and 4) temperature. The error of the dielectric model was evaluated in terms of RMSE, yielding the values RMSE of 0.53 and 0.43 for the soil dielectric constant and loss factor, respectively. These values appeared to be in the order of the dielectric measurement error itself. The dielectric model suggested can be applied in the active and passive remote sensing techniques in microwave to develop algorithms for retrieving soil moisture and freeze/thaw state of the topsoil in the Arctic regions.

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Доп.точки доступа:
Molostov, I. P.; Scherbinin, V. V.; Миронов, Валерий Леонидович
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3.


   
    Suppression of surface plasmon resonance in Au nanoparticles upon transition to the liquid state / V. S. Gerasimov [et al.] // Opt. Express. - 2016. - Vol. 24, Is. 23. - P. 26851-26856, DOI 10.1364/OE.24.026851. - Cited References: 24. - This work was performed within the State contract of the RF Ministry of Education and Science for Siberian Federal University for scientific research in 2014–2016 (Reference number 1792) and SB RAS Program No II.2P (0358-2015-0010). The numerical calculations were performed using the MVS-1000 M cluster at the Institute of Computational Modeling, Siberian Branch, Russian Academy of Sciences. . - ISSN 1094-4087
Кл.слова (ненормированные):
Electron scattering -- Gold -- Lattice constants -- Liquids -- Melting -- Metal nanoparticles -- Nanoparticles -- Surface plasmon resonance -- Electron phonon couplings -- Experimental spectra -- Experimental values -- Gold Nanoparticles -- Nonlinear optical response -- Plasmonic nanoparticle -- Relaxation constants -- Surface plasmon frequency -- Plasmons
Аннотация: Significant suppression of resonant properties of single gold nanoparticles at the surface plasmon frequency during heating and subsequent transition to the liquid state has been demonstrated experimentally and explained for the first time. The results for plasmonic absorption of the nanoparticles have been analyzed by means of Mie theory using experimental values of the optical constants for the liquid and solid metal. The good qualitative agreement between calculated and experimental spectra support the idea that the process of melting is accompanied by an abrupt increase of the relaxation constants, which depends, beside electronphonon coupling, on electron scattering at a rising number of lattice defects in a particle upon growth of its temperature, and subsequent melting as a major cause for the observed plasmonic suppression. It is emphasized that observed effect is fully reversible and may underlie nonlinear optical responses of nanocolloids and composite materials containing plasmonic nanoparticles and their aggregates in conditions of local heating and in general, manifest itself in a wide range of plasmonics phenomena associated with strong heating of nanoparticles. © 2016 Optical Society of America.

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Держатели документа:
Siberian Federal University, Krasnoyarsk, Russian Federation
Institute of Computational Modeling, Federal Research Center KSC SB RAS, Krasnoyarsk, Russian Federation
Siberian State Aerospace University, Krasnoyarsk, Russian Federation
Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarskz, Russian Federation
Division of Theoretical Chemistry and Biology, Royal Institute of Technology, Stockholm, Sweden

Доп.точки доступа:
Gerasimov, V. S.; Герасимов, Валерий Сергеевич; Ershov, A. E.; Ершов, Александр Евгеньевич; Gavrilyuk, A. P.; Karpov, S. V.; Карпов, Сергей Васильевич; Agren, H.; Polyutov, S. P.
}
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4.


    Berzhanskii, V. N.
    Ccritical relaxation in CDCR2SE4 ferromagnet / V. N. Berzhanskii, V. I. Ivanov // Fiz. Tverd. Tela. - 1980. - Vol. 22, Is. 6. - P. 1871-1873. - Cited References: 7 . - ISSN 0367-3294
РУБ Physics, Condensed Matter


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Доп.точки доступа:
Ivanov, V. I.; Бержанский, Владимир Наумович
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5.


    Zobov, V. E.
    Spin-array relaxation of the nuclear magnetic system of solid states with multi-spin interactions generated by modulated intense radiofrequent fields / V. E. Zobov, M. A. Popov // Zhurnal Eksperimentalnoi Teor. Fiz. - 1996. - Vol. 110, Is. 2. - P. 635-660. - Cited References: 24 . - ISSN 0044-4510
РУБ Physics, Multidisciplinary
Рубрики:
NMR

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Доп.точки доступа:
Popov, M. A.
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6.


   
    The influence of magnetic field on the frequency dependence of the impedance in the anion–substituted manganese chalcogenides / O. B. Romanova [et al.] // VI Euro-Asian Symposium "Trends in MAGnetism" (EASTMAG-2016) : abstracts / ed.: O. A. Maksimova, R. D. Ivantsov. - Krasnoyarsk : KIP RAS SB, 2016. - Ст. P4.4. - P. 232. - This work was financially supported by RFFI №15–42–04099 and assignment №114090470016. . - ISBN 978-5-904603-06-9
Кл.слова (ненормированные):
chalcogenides -- impedance -- relaxation -- magnetoresistance

Держатели документа:
Scientific-Practical Materials Research Center NAS, Minsk, Belarus

Доп.точки доступа:
Romanova, O. B.; Романова, Оксана Борисовна; Aplesnin, S. S.; Аплеснин, Сергей Степанович; Korolev, V. V.; Королёв В. В.; Kretinin, V. V.; Кретинин В. В.; Yanushkevich, K. I.; Euro-Asian Symposium "Trends in MAGnetism"(6 ; 2016 ; Aug. ; 15-19 ; Krasnoyarsk); "Trends in MAGnetism", Euro-Asian Symposium(6 ; 2016 ; Aug. ; 15-19 ; Krasnoyarsk); Институт физики им. Л.В. Киренского Сибирского отделения РАН

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7.


    Mironov, V. L.
    Temperature dependent multi-relaxation spectroscopic dielectric model for an arctic silt clay loam soil thawed and frozen at 0.1-15 GHZ / V. L. Mironov, I. P. Molostov, A. Yu. Karavaysky // IEEE Int.Geoscience and Remote Sensing Symp. (IGARSS) : proceedings. - 2016. - P. 3122-3125DOI 10.1109/IGARSS.2016.7729807. - Cited References: 5
   Перевод заглавия: Температурно зависимая много-релаксационная спектроскопическая диэлектрическая модель для арктической суглинистой почвы при замораживании и оттаивании на частоте 0,1-15 ГГц
Аннотация: The dielectric model for an arctic silt clay loam soil collected on the Yamal peninsula both thawed and frozen has been developed. The model is based on the soil dielectric measurements carried out in the ranges of gravimetric moisture 0.01 to 0.33 g/g, dry soil density 1.28 to 1.65 g/cm3, and temperature 25 to -30°C (cooling run), in the frequency range 0.1-15 GHz. To fit the results of measurements of the soil complex dielectric constant as a function of soil moisture and wave frequency, the refractive mixing dielectric model in conjunction with the Debye multi-relaxation equations were applied. As a result, the spectroscopic parameters of dielectric relaxations and electrical specific conductivities for the bound, transient bound, and unbound soil water components were derived, being further complimented with the thermodynamics parameters. Having these parameters, the complex relative permittivity of soil can be predicted as a function of 1) density of dry soil, 2) gravimetric moisture, 3) wave frequency, and 4) temperature.

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Доп.точки доступа:
Molostov, I. P.; Молостов, Илья Петрович; Karavaysky, A. Yu.; Каравайский, Андрей Юрьевич; Миронов, Валерий Леонидович; IEEE International Geoscience and Remote Sensing Symposium(2016 ; July ; 10-15 ; Beijing, China)
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8.


   
    Dielectric relaxation and phase transition behavior of (1–x)Pb(Zn1/3Nb2/3)O3-xBaTiO3 binary solid solutions / Q. Gao [et al.] // Ceram. Int. - 2018. - Vol. 44, Is. 15. - P. 18491-18498, DOI 10.1016/j.ceramint.2018.07.069. - Cited References: 53. - This work was supported by the National Basic Research Program of China (Grant No. 2015CB654602 ), the International Science & Technology Cooperation Program of China (Grant No. 2015DFA51100 ), the NSFC projects (Grant Nos. 51761145024 and 51772239 ), Shaanxi province project 2017 ktpt-21, the Joint fund of the Ministry of Education (Grant No. 6141A02033210 ) and the 111 Project under Grant No. B14040 . The SEM work was done at International Center for Dielectric Research (ICDR), Xi’an Jiaotong University, Xi’an, China. . - ISSN 0272-8842
Кл.слова (ненормированные):
Dielectric relaxation -- Phase transition -- “U”-shaped variation -- Polarization mismatch
Аннотация: Dielectric relaxation and phase transition behaviors in (1–x)Pb(Zn1/3Nb2/3)O3-xBaTiO3 (PZN-BT) binary solid solutions have been systematically studied in this paper. All the compositions display a pure pseudo-cubic perovskite structure. As the BT contents increase from 10 mol% to 70 mol%, the phase transition peak becomes broader and broader, accompanying with decreases of ɛm (the maximum dielectric permittivity) and Tm (the temperature corresponds to the ɛm). Nevertheless, an abnormal increase of ɛm and Tm occurs when the BT contents exceeds 70 mol%, forming a “U” shaped curve of the compositional dependence of ɛm and Tm. Moreover, it is indicated from the new glass model fitting results that the characteristic parameter p, which represents the degree of relaxation, also shows a similar “U” shaped variation curve. Similarly, as shown in polarization-electric field loops, both remnant polarizations (Pr) and coercive fields (Ec) display the “U” shaped curve as the BT content changes from 10 mol% to 80 mol%. Finally, according to the similar variation of these key parameters mentioned above, a polarization mismatched model, which describes the destruction and reestablishment of the long range order arrangement in solid solutions composed of two kinds of ferroelectrics, is proposed to illustrate the underlying mechanism. In this PZN-BT system or other similar ABO3-type perovskite relaxors, the competition between the A-O and B-O coupling plays an important role to form the “U” shaped evolution of these key parameters.

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Держатели документа:
Electronic Materials Research Laboratory, Key Laboratory of the Ministry of Education & International Center for Dielectric Research, School of Electronic and In formation Engineering, Xi'an Jiaotong University, Xi'an, China
Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk, Russian Federation
Institute of Engineering Physics and Radio Electronics, Siberian Federal University, Krasnoyarsk, Russian Federation
State Key Laboratory of High Performance Ceramics and Superfine Microstructures, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai, China
School of Natural Sciences and Mathematics, Ural Federal University, Ekaterinburg, Russian Federation

Доп.точки доступа:
Gao, Q.; Hu, Q.; Jin, L.; Gorev, M. V.; Горев, Михаил Васильевич; Chezganov, D. S.; Vlasov, E. O.; Zeng, H.; Zhao, L.; Cui, Y.; Xu, Z.; Wei, X.
}
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9.


    Lundin, A. A.
    Asymptotic similarity of time correlation functions and shape of the 13C and 29Si NMR spectra in diamond and silicon / A. A. Lundin, V. E. Zobov // J. Exp. Theor. Phys. - 2018. - Vol. 127, Is. 2. - P. 305-315, DOI 10.1134/S1063776118080216. - Cited References: 47. - We thank V.A. Atsarkin, V.V. Demidov, F.S. Dzheparov, and E. B. Feldman for the discussion of our results. This work was supported by a subsidy allocated by the Institute of Chemical Physics of the Russian Academy of Science for the State assignment, theme 0082-2018-0005, code TSITIS AAAA-A18-118020690203. . - ISSN 1063-7761. - ISSN 1090-6509
Рубрики:
SPIN SYSTEMS
   LINE-SHAPES

   RELAXATION

   SOLIDS

   PARAMAGNETS

   RESONANCE

Аннотация: Based on the proposed theory, we have investigated the shape of the NMR absorption spectra for 13C and 29Si nuclei in diamond and silicon crystals attributable to the internuclear dipole–dipole interaction. In accordance with the available experimental data, we have considered both crystals with a 100% content of magnetoactive isotopes and crystals with a comparatively low dilution by nonmagnetic nuclei. The time correlation functions (the first of which is the Fourier transform of the NMR spectrum) arising in an infinite chain of coupled differential equations are shown to be mutually similar with a slight time delay. The proposed theory allows the spectrum to be calculated analytically. The results obtained agree satisfactorily with the experimental ones. It is noted that the mutual similarity of the time correlation functions is probably a corollary of the development of dynamical chaos in the system.

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Публикация на русском языке Лундин, Андрей Арнольдович. Асимптотическое подобие временных корреляционных функций и форма спектров ЯМР 13C и 29Si в алмазе и кремнии [Текст] / А. А. Лундин, В. Е. Зобов // Журн. эксперим. и теор. физ. - 2018. - Т. 154 Вып. 2. - С. 354–367

Держатели документа:
Russian Acad Sci, Semenov Inst Chem Phys, Vorobevskoe Sh 26, Moscow 117977, Russia.
Russian Acad Sci, Kirensky Inst Phys, Fed Res Ctr, Krasnoyarsk Sci Ctr,Siberian Branch, Akademgorodok 50, Krasnoyarsk 660036, Russia.

Доп.точки доступа:
Zobov, V. E.; Зобов, Владимир Евгеньевич; Institute of Chemical Physics of the Russian Academy of Science [0082-2018-0005, TSITIS AAAA-A18-118020690203]
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10.


   
    Особенности двухмагнонных процессов релаксации в нанокристаллических тонких магнитных пленках / А. В. Изотов [и др.] // Изв. вузов. Физика. - 2018. - Т. 61, № 12. - С. 153-159. - Библиогр.: 25. - Работа выполнена при поддержке Министерства образования и науки РФ, задание № 3.1031.2017/ПЧ. . - ISSN 0021-3411
   Перевод заглавия: Special features of two-magnon relaxation processes in nanocrystal magnetic thin films
Кл.слова (ненормированные):
микромагнитное моделирование -- нанокристаллиты -- случайная магнитная анизотропия -- ферромагнитный резонанс -- сверхвысокие частоты -- двухмагнонный процесс релаксации -- Micromagnetic modeling -- Nanocrystallites -- Random magnetic anisotropy -- ferromagnetic resonance -- ultrahigh frequencies -- two-magnon relaxation process
Аннотация: Численным анализом микромагнитной модели обнаружена «резонансная» особенность процессов релаксации в нанокристаллических тонких магнитных пленках. Особенность проявляется в виде резкого уширения линии ферромагнитного резонанса (ФМР) на определенной частоте f 1, зависящей от магнитных характеристик пленки, и она наблюдается только в пленках, толщина которых превышает некоторое пороговое значение d min. Резкое уширение линии ФМР сопровождается значительным смещением резонансного поля, причем величина смещения меняет знак на частоте ~ f 1. Аналитически показано, что природа наблюдаемых эффектов связана с двухмагнонным процессом рассеяния спиновых волн на квазипериодической магнитной микроструктуре - «ряби» намагниченности. Полученные выражения для порогового значения толщины пленки d min и частоты максимального уширения линии ФМР f 1 хорошо согласуются с результатами численного расчета микромагнитной модели.
A resonant feature of the relaxation processes in nanocrystal magnetic thin films is revealed by numerical analysis for a micromagnetic model. This special feature is manifested through sharp broadening of the ferromagnetic resonance (FMR) line at the frequency f 1 depending on the magnetic characteristics of the film and is observed only in the films whose thickness exceeds a certain threshold value d min. The sharp broadening of the FMR lines is accompanied by a considerable displacement of the resonant field, and the displacement changes its sign at the frequency ~ f 1. It is analytically shown that the nature of the observable effects is connected with the two-magnon process of spin wave scattering on a quasi-periodic magnetic microstructure - magnetization ripples. The obtained expressions for the threshold value of the film thickness d min and the frequency f 1 of the maximal FMR line broadening are in good agreement with results of numerical calculation for the micromagnetic model.

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Переводная версия Two-Magnon Relaxation Processes in Nanocrystalline Thin Magnetic Films [Текст] / A. V. Izotov [et al.] // Russ. Phys. J. - 2019. - Vol. 61 Is. 12.- P.2313-2320

Держатели документа:
Институт физики им. Л.В. Киренского ФИЦ КНЦ СО РАН
Сибирский федеральный университет

Доп.точки доступа:
Изотов, Андрей Викторович; Izotov, A. V.; Беляев, Борис Афанасьевич; Belyaev, B. A.; Соловьев, Платон Николаевич; Solovev, P. N.; Боев, Никита Михайлович; Boev, N. M.
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