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Общее количество найденных документов : 25
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1.

Bulgakov E. N. Light guiding above the light line in arrays of dielectric nanospheres/E. N. Bulgakov, D. N. Maksimov // Optics Letters:Optical Society of America, 2016. т.Vol. 41,N Is. 16.-С.3888-3891
2.

Sadreev A. F. Temporal oscillations of light transmission through dielectric microparticles subjected to optically induced motion/A. F. Sadreev, E. Y. Sherman // Physical Review A - Atomic, Molecular, and Optical Physics:American Physical Society, 2016. т.Vol. 94,N Is. 3.- Ст.033820
3.

Theoretical investigation of molecular and electronic structures of buckminsterfullerene-silicon quantum dot systems/A. S. Fedorov [et al.] // Journal of Physical Chemistry A:American Chemical Society, 2016. т.Vol. 120,N Is. 49.-С.9767-9775
4.

Solid-phase synthesis of L1(0)-FePd(001) epitaxial thin films: Structural transformations and magnetic anisotropy/V. G. Myagkov [et al.] // JETP Letters, 2010. т.Vol. 91,N Is. 9.-С.481-485
5.

Magnetic properties of biomineral particles produced by bacteria Klebsiella oxytoca/Y. L. Raikher [et al.] // PHYSICS OF THE SOLID STATE:MAIK NAUKA/INTERPERIODICA/SPRINGER, 2010. т.Vol. 52,N Is. 2.-С.298-305
6.

Spectroscopic studies of fractal aggregates of silver nanospheres undergoing local restructuring/S. V. Karpov [et al.] // JOURNAL OF CHEMICAL PHYSICS:AMER INST PHYSICS, 2006. т.Vol. 125,N Is. 11.- Ст.111101
7.

Decoration of carbon nanomaterial powders with dispersed platinum metal particles/V. G. Isakova [et al.] // Russian Journal of Applied Chemistry, 2018. т.Vol. 91,N Is. 7.-С.1209-1216
8.

The Low-Temperature Magnetic State and Magnetic Ordering Temperature of ϵ-Fe2O3 Iron Oxide Nanoparticles/A. Dubrovskiy [et al.] // IEEE Magnetics Letters, 2019. т.Vol. 10.- Ст.6110103
9.

Electrophysical properties of composites based on polyethylene modified with multi-walled carbon nanotubes with high content of Fe-Co-catalyst/S. I. Moseenkov, V. L. Kuznetsov, A. V. Zavorin [et al.] // Russian Journal of Applied Chemistry, 2020. т.Vol. 93,N Is. 4.-С.586-594
10.

Rotational magnetic anisotropy in polycrystalline FePt films fabricated by solid-state synthesis/V. S. Zhigalov [et al.] // Physics of the Solid State, 2018. т.Vol. 60,N Is. 1.-С.178-182
11.

Dip-Pen Nanolithography method for fabrication of biofunctionalized magnetic nanodiscs applied in medicine/T. E. Smolyarova [et al.] // Semiconductors, 2018. т.Vol. 52:25th International Symposium on Nanostructures - Physics and Technology (Jun 26-30, 2017, Saint Petersburg, Russia),N Is. 5.-С.675-677
12.

Structural, electronic and vibrational properties of LaF3 according to density functional theory and Raman spectroscopy/A. S. Oreshonkov [et al.] // Journal of Physics: Condensed Matter, 2018. т.Vol. 30,N Is. 25.- Ст.255901
13.

Belyaev B. A. Micromagnetic calculation of the equilibrium distribution of magnetic moments in thin films/B. A. Belyaev, A. V. Izotov, A. A. Leksikov // PHYSICS OF THE SOLID STATE:MAIK NAUKA/INTERPERIODICA/SPRINGER, 2010. т.Vol. 52,N Is. 8.-С.1664-1672
14.

Dynamic magnetization of ε-Fe2O3 in pulse field: Evidence of surface effect/D. A. Balaev [et al.] // Journal of Applied Physics:American Institute of Physics, 2015. т.Vol. 117,N Is. 6.- Ст.063908
15.

Synthesis, crystal structure, and enhanced luminescence of garnet-type Ca3Ga2Ge3O12:Cr3+ by codoping Bi3+/C. Y. Liu [et al.] // Journal of the American Ceramic Society:Wiley-Blackwell, 2015. т.Vol. 98,N Is. 6.-С.1870-1876
16.

The exchange interaction effects on magnetic properties of the nanostructured CoPt particles/S. V. Komogortsev [et al.] // Journal of Magnetism and Magnetic Materials:Elsevier, 2016. т.Vol. 401.-С.236-241
17.

Magnetic anisotropy and order parameter in nanostructured CoPt particles/S. V. Komogortsev [et al.] // Applied Physics Letters:American Institute of Physics, 2013. т.Vol. 103,N Is. 15.- Ст.152404
18.

Solid state synthesis and characterization of ferromagnetic nanocomposite Fe-In2O3 thin films/V. G. Myagkov [et al.] // Journal of Alloys and Compounds:Elsevier Science, 2014. т.Vol. 612.-С.189-194
19.

Structural and magnetic resonance investigations of CuCr2S4 nanoclusters and nanocrystals/A. I. Pankrats [et al.] // Journal of Applied Physics:American Institute of Physics, 2014. т.Vol. 116,N Is. 5.- Ст.54302
20.

The influence of oxygen concentration on the formation of CuO and Cu2O crystalline phases during the synthesis in the plasma of low pressure arc discharge/A. V. Uschakov [et al.] // Vacuum:Elsevier, 2016. т.Vol. 128.-С.123-127
 

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