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 Найдено в других БД:Каталог книг и брошюр библиотеки ИФ СО РАН (13)
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1.


   
    Characterization of bio-synthesized nanoparticles produced by Klebsiella oxytoca / L. Anghel [et al.] // Journal of Physics: Conference Series. - 2012. - Vol. 351, Is. 1. - Ст. 012005. - P. , DOI 10.1088/1742-6596/351/1/012005 . - ISSN 1742-6588
Кл.слова (ненормированные):
Absorption peaks -- Biominerals -- Chemical compositions -- Exopolysaccharides -- Ferrihydrites -- Fitting procedure -- FTIR spectroscopy -- Klebsiella oxytoca -- Model calculations -- Morphological analysis -- Radius of gyration -- Scattering objects -- Small angle X-ray scattering -- Structural and morphological properties -- Structural investigation -- UV-vis spectroscopy -- Water dispersion -- Water-dispersed -- Experiments -- Nanoparticles -- Polysaccharides -- Raman spectroscopy -- Scattering -- Ultraviolet visible spectroscopy -- Synthesis (chemical)
Аннотация: Structural and morphological properties of biogenic ferrihydrite nanoparticles produced by bacteria Klebsiella oxytoca are investigated. The stability of water dispersions of biomineral particles produced by Klebsiella oxytoca was monitored by UV-Vis spectroscopy. Their chemical composition was determined by FT-IR spectroscopy. The vibrational spectra of biogenic ferrihydrite nanoparticles revealed typical absorption peaks of exopolysaccharides. Morphological analysis based on Raman spectroscopy indicated the presence of exopolysaccharides on the surface as well as inside the pores of the ferrihydrite nanoparticles. Structural investigations of ultrasonic assisted samples of different concentration of water dispersed particles were performed using small angle X-ray scattering analysis. Model calculations and fitting procedures revealed scattering objects of an elongated shape with 6.73В±0.16 nm radius of gyration. В© Published under licence by IOP Publishing Ltd.

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Доп.точки доступа:
Anghel, L.; Balasoiu, M.; Ishchenko, L. A.; Stolyar, S. V.; Столяр, Сергей Викторович; Kurkin, T. S.; Rogachev, A. V.; Kuklin, A. I.; Kovalev, Yu.S.; Raikher, Yu.L.; Iskhakov, R. S.; Исхаков, Рауф Садыкович; Duca, G.; International Workshop on SANS-YuMO User Meeting at the Start-up of Scientific Experiments on the IBR-2M Reactor: Devoted to the 75th Anniversary of Yu M Ostanevich's Birth(2 ; Dubna)(27 May 2011 - 30 May 2011)
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2.


   
    Electron-Phonon Interaction and Phonon Renormalization in the Lamellar Cobaltate NaxCoO2 / A. . Donkov [et al.] // J. Supercond. Nov. Magn. - 2009. - Vol. 22: International Conference on Quantum Phenomena in Complex Matters (JUL 26-AUG 01, 2008, Erice, ITALY), Is. 1. - P. 37-40, DOI 10.1007/s10948-008-0372-6. - Cited References: 16 . - ISSN 1557-1939
РУБ Physics, Applied + Physics, Condensed Matter
Рубрики:
SUPERCONDUCTIVITY
Кл.слова (ненормированные):
Electron-phonon interaction -- Superconductivity -- Sodium cobaltate -- Electron-phonon interaction -- Sodium cobaltate -- Superconductivity -- Brillouin zones -- Cobaltate -- Conducting electrons -- Conduction electrons -- Doping dependences -- Feedback effects -- Matrix elements -- Phonon frequencies -- Phonon modes -- Raman experiments -- Renormalization -- Sodium cobaltate -- Sodium cobaltates -- Atoms -- Cobalt compounds -- Critical current density (superconductivity) -- Electric conductivity -- Electron-phonon interactions -- Electrons -- Flow interactions -- Penetration depth (superconductivity) -- Sodium -- Superconductivity -- Phonons
Аннотация: We study theoretically the electron-phonon interaction in NaxCoO2. For the A(1g) and E-1g phonon modes found in Raman experiments, we calculate the matrix elements of the electron-phonon interaction. Analyzing the feedback effect of the conduction electrons on the phonon frequency., we investigate the doping dependence of these two phonon modes. Due to the momentum dependence of the electron-phonon interaction, we find the strongest renormalization of the E-1g mode around the Brillouin zone boundary which should be observed in the neutron scattering. At the same time, the A(1g) mode shows the strongest coupling to the conducting electrons around the G point and reveals its doping dependence in the Raman experiments. Our results shed light on the possible importance of the electron-phonon interaction in the lamellar sodium cobaltates.

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Держатели документа:
[Donkov, A.
Eremin, I.
Knolle, J.
Korshunov, M. M.] Max Planck Inst Phys Komplexer Syst, D-01187 Dresden, Germany
[Eremin, I.] TU Braunschweig, Inst Math & Theoret Phys, D-38106 Braunschweig, Germany
[Korshunov, M. M.] Russian Acad Sci, LV Kirensky Phys Inst, Siberian Branch, Krasnoyarsk 660036, Russia
ИФ СО РАН
Max-Planck-Institut fur Physik Komplexer Systeme, Dresden 01187, Germany
Institute fur Mathematische und Theoretische Physik, TU Braunschweig, Braunschweig 38106, Germany
Siberian Branch, Russian Academy of Sciences, L.V. Kirensky Institute of Physics, Krasnoyarsk 660036, Russian Federation

Доп.точки доступа:
Donkov, A.; Eremin, I.; Knolle, J.; Korshunov, M. M.; Коршунов, Максим Михайлович
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3.


    Kolovsky, A. R.
    Mott-insulator state of cold atoms in tilted optical lattices: Doublon dynamics and multilevel Landau-Zener tunneling / A. R. Kolovsky, D. N. Maksimov // Phys. Rev. A. - 2016. - Vol. 94, Is. 4. - Ст. 043630, DOI 10.1103/PhysRevA.94.043630. - Cited References: 34 . - ISSN 1050-2947
Кл.слова (ненормированные):
Crystal lattices -- Optical materials -- Analytical expressions -- Cold atoms -- Doublons -- Dynamical response -- In-laboratory experiments -- Landau zener tunneling -- Mott insulator state -- Optical lattices
Аннотация: We discuss the dynamical response of strongly interacting Bose atoms in an adiabatically tilted optical lattice. The analysis is performed in terms of the multilevel Landau-Zener tunneling. Different regimes of tunneling are identified and analytical expressions for the doublon number, which is the quantity measured in laboratory experiments, are derived. © 2016 American Physical Society.

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Держатели документа:
Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk, Russian Federation
Siberian Federal University, Krasnoyarsk, Russian Federation

Доп.точки доступа:
Maksimov, D. N.; Максимов, Дмитрий Николаевич; Коловский, Андрей Радиевич
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4.


   
    The study of phase transitions in a system TmXMn1-XSe by means of ultrasonic experiments / O. B. Romanova, S. S. Aplesnin, M. N. Sitnikov [et al.] // IX International scientific conference “Actual problems of solid state physics" : Book of abstracts / int. sci. com. S. S. Aplesnin [et al]. - Minsk, 2021. - P. 173. - Cited References: 1. - The reported study was funded by RFBR according to the research project №20-52-00005 Bel_a. The reported study was funded by BRFBR according to the research project № Т20Р-052

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Доп.точки доступа:
Aplesnin, S. S. \int. sci. com.\; Аплеснин, Сергей Степанович; Romanova, O. B.; Романова, Оксана Борисовна; Aplesnin, S. S.; Sitnikov, M. N.; Kharkov, A. M.; Харьков, Анатолий Михайлович; Udod, L. V.; Удод, Любовь Викторовна; Galyas, A. I.; "Actual problems of solid state physics" , International scientific conference(9 ; 2021 ; ; Minsk); Научно-практический центр по материаловедению НАН Беларуси
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5.


   
    Experimental and numerical investigations of the magnetization curves in the nanocomposites consisted of several ferromagnetic phases / S. Komogortsev [et al.] // TRENDS IN MAGNETISM. - 2011. - Vol. 168-169. - P369-372, DOI 10.4028/www.scientific.net/SSP.168-169.369 . - ISSN 1012-0394
Кл.слова (ненормированные):
approach to saturation -- ferromagnetic correlations -- magnetization curves -- numerical experiment -- two-phase nanomaterials -- ferromagnetic materials -- ferromagnetism -- magnetic anisotropy -- nanocomposites -- nanostructured materials -- anisotropy -- ferromagnetic materials -- ferromagnetism -- magnetic anisotropy -- magnetization -- nanostructured materials -- saturation magnetization -- approach to saturation -- ferromagnetic correlations -- magnetization curves -- numerical experiments -- two-phase nanomaterials -- ferromagnetic exchange -- ferromagnetic phasis -- magnetic anisotropy constant -- numerical investigations -- two phase -- saturation magnetization -- magnetism
Аннотация: The magnetization correlation function for two-phase one-dimentional chain of the ferromagnetic exchange-coupled nanoparticles with a random anisotropy was calculated. The dependence of the magnetic correlation radius and the average magnetic anisotropy constant on the intrinsic size of the phase inhomogeneity was founded. The data allows estimating the applicability limits of the analytical equations for the magnetization curves approaching saturation of two-phase ferromagnetic nanomaterials.

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Держатели документа:
Kirensky Institute of Physics, SD of RAS, Akademgorodok, Krasnoyarsk, 660036, Russian Federation
Siberian State Technological University, 82 Mira Prospect, Krasnoyarsk, 660049, Russian Federation
Krasnoyarsk State Pedagogical University, 89 A.Lebedevoy Street, Krasnoyarsk, 660049, Russian Federation
Siberian Federal University, 79 Svobodny Prospect, Krasnoyarsk, 660041, Russian Federation

Доп.точки доступа:
Komogortsev, S.V.; Комогорцев, Сергей Викторович; Iskhakov, R. S.; Исхаков, Рауф Садыкович; Balaev, A. D.; Балаев, Александр Дмитриевич; Chekanova, L. A.; Чеканова, Лидия Александровна; Denisova, E. A.; Денисова, Елена Александровна; Eremin, E. V.; Еремин, Евгений Владимирович; Smirnov, S.; Momot, N.
}
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6.


   
    Coherent nonlinear optics and quantum control in negative-index metamaterials / A. K. Popov, S. A. Myslivets, V. M. Shalaev // J. Opt. A-Pure Appl. Opt. - 2009. - Vol. 11, Is. 11, DOI 10.1088/1464-4258/11/11/114028. - Cited Reference Count: 27 . - ISSN 1464-4258
Рубрики:
LEFT-HANDED METAMATERIALS
   2ND-HARMONIC GENERATION

   PARAMETRIC OSCILLATOR

   3RD-HARMONIC GENERATION

   MAGNETIC METAMATERIALS

   COMPENSATING LOSSES

   BACKWARD WAVE

Кл.слова (ненормированные):
nonlinear optics -- metamaterials -- coherent optical effects -- backward waves -- parametric -- microamplifiers and oscillators -- Backward waves -- Coherent optical effects -- Metamaterials -- Microamplifiers and oscillators -- Nonlinear optics -- Parametric -- Backward waves -- Coherent Energy Transfer -- Coherent optical effects -- Control fields -- Control optical fields -- Laser induced -- Negative refractive index -- Negative-index -- Numerical experiments -- Parametric amplification -- Phase mismatch -- Quantum control -- Absorption -- Amplification -- Energy transfer -- Four wave mixing -- Metamaterials -- Optical materials -- Parametric oscillators -- Refractive index -- Transparency -- Optical parametric oscillators
Аннотация: The extraordinary properties of laser-induced transparency of a negative-index slab and parametric amplification for a backward wave signal are investigated. The effects of the idler absorption and phase mismatch on the amplification of the signal are studied, and the feasibility of ensuring robust transparency for a broad range of control field intensities and slab thicknesses is shown. A particular option consisting of the independent engineering of a strong four-wave mixing response and the negative refractive index is proposed and its specific features are investigated. The feasibility of quantum control over the slab transparency in such a scheme is confirmed through numerical experiments. We thus show opportunities and conditions for the compensation of the strong absorption inherent to plasmonic negative-index metamaterials, and we further show achievable transparency through coherent energy transfer from the control optical field to the negative-index signal.

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Держатели документа:
Univ Wisconsin, Dept Phys & Astron, Stevens Point, WI 54481 USA
Russian Acad Sci, Inst Phys, Krasnoyarsk 660036, Russia
Siberian Fed Univ, Krasnoyarsk 660036, Russia
Purdue Univ, Birk Nanotechnol Ctr, W Lafayette, IN 47907 USA
Purdue Univ, Sch Elect & Comp Engn, W Lafayette, IN 47907 USA

Доп.точки доступа:
Popov, A.K.; Myslivets, S.A.; Shalaev, V.M.; International Workshop on Theoretical and Computational Nano-Photonics(DEC 03-05, 2008 ; Bad Honnef, GERMANY)
}
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7.


   
    Random quasi-phase-matching in a nonlinear photonic crystal structure of strontium tetraborate / A. S. Aleksandrovsky [et al.] // Phys. Rev. A. - 2008. - Vol. 78, Is. 3. - Ст. 031802, DOI 10.1103/PhysRevA.78.031802. - Cited Reference Count: 20. - Гранты: This work was supported by RFBR Grant No. 02-0700497, Grants of the President of the Russian Federation for the support of leading scientific schools (No. SS-1011.2008.2 and No. SS-3818.2008.3), Grant No. RNP.2.1.1.1814, and the Interdisciplinary Integration project of SB RAS 33. - Финансирующая организация: RFBR [02-0700497]; Russian Federation [SS-1011.2008.2, SS-3818.2008.3, RNP.2.1.1.1814]; SB RAS 33 . - ISSN 1050-2947
Рубрики:
HARMONIC-GENERATION
   DOMAIN-STRUCTURE

Кл.слова (ненормированные):
Alkaline earth metals -- Crystal atomic structure -- Experiments -- Harmonic generation -- Photonic crystals -- Powders -- Random processes -- Strontium -- Angular dependences -- Enhancement factors -- Near ultraviolet -- Photonic Crystal structures -- Quasi phase-matching -- Second-harmonic generation -- Spectral dependences -- Tetra borate -- Crystal structure
Аннотация: Random quasi-phase-matching (RQPM) of the second-harmonic generation process is investigated experimentally and theoretically in a strongly randomized spontaneously grown nonlinear photonic crystal structure of strontium tetraborate. The thickness of domains in the structure is measured and employed in calculations of angular and spectral dependences of random quasi-phase-matching. Despite the great scale of randomness, the RQPM effect is preserved. The calculated enhancement factor due to RQPM is in excellent agreement with experiment, and good agreement between calculations and experiment is obtained for the shape of the angular dependence of RQPM. The calculated spectral dependence of RQPM consists of a number of narrow peaks, and a maximum enhancement factor is attained in the near ultraviolet. The band structure of randomized nonlinear photonic crystal is calculated.

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Держатели документа:
Akademgorodok, LV Kirensky Phys Inst, Krasnoyarsk 660036, Russia
Siberian Fed Univ, Krasnoyarsk 660079, Russia

Доп.точки доступа:
Aleksandrovsky, A. S.; Александровский, Александр Сергеевич; Zaitsev, A. I.; Зайцев, Александр Иванович; Shakhura, I. E. ; Zamkov, A. V.; Замков, Анатолий Васильевич; Vyunishev, A. M.; Вьюнышев, Андрей Михайлович
}
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8.


   
    Spontaneous imbibition experiments for enhanced oil recovery with silica nanosols / M. I. Pryazhnikov, V. A. Zhigarev, A. V. Minakov, I. V. Nemtsev // Capillarity. - 2024. - Vol. 10, Is. 3. - P. 73-86, DOI 10.46690/capi.2024.03.02. - Cited References: 53. - This work is partially financed by Ministry of Science and Higher Education of the Russian Federation (No. FSRZ2020-0012) . - ISSN 2709-2119. - ISSN 2652-3310
Кл.слова (ненормированные):
Spontaneous imbibition -- enhanced oil recovery -- silica nanosols -- wettability -- interfacial tension
Аннотация: Experimental oil displacement as a result of spontaneous imbibition of silica nanosols has been carried out using two types of sandstone as the reservoir rock. The permeability of the cores ranged from 0.34 to 333 mD, while the porosity was 11% and 22%, respectively. During the research, the influence of the concentration and nanoparticle size, as well as the permeability of the rock, on the process of spontaneous imbibition, was studied. Silica nanosols were considered as an object of study. The nanoparticle size ranged from 10 to 35 nm. The mass concentration of nanoparticles varied from 0.01% to 0.25%. It was found that the use of silica nanosols significantly increases the rate of the spontaneous imbibition process. It was established that a silica nanosol with a nanoparticle size of 10 nm and a concentration of 0.25% allows to displace more than six times oil compared to the reservoir water model in the same time. As a result, it was shown that the oil displacement efficiency and the efficiency of spontaneous imbibition increase along with an increase in the nanoparticle concentration and a decrease in the nanoparticle size.

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Держатели документа:
Laboratory of Physical and Chemical Technologies for the Development of Hard-to-Recover Hydrocarbon Reserve, Siberian Federal University, Krasnoyarsk 660041, Russia
Laboratory of Heat Exchange Control in Phase and Chemical Transformations, Kutateladze Institute of Thermophysics, SB RAS, Novosibirsk 630090, Russia
Department of Molecular Electronics, Federal Research Center “Krasnoyarsk Science Center of the Siberian Branch of the Russian Academy of Sciences”, Krasnoyarsk 660036, Russia
Laboratory of molecular spectroscopy, L.V. Kirensky Institute of Physics, SB RAS, Krasnoyarsk 660036, Russia

Доп.точки доступа:
Pryazhnikov, M. I.; Zhigarev, V. A.; Minakov, A. V.; Nemtsev, I. V.; Немцев, Иван Васильевич
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