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Общее количество найденных документов : 30
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1.

3D optical vortex lattices/D. A. Ikonnikov, S. A. Myslivets, V. G. Arkhipkin, A. M. Vyunishev // Annalen der Physik, 2021. т.Vol. 533,N Is. 7.- Ст.2100114
2.

Study of Peculiarities of the Microwave Absorption Spectrum of Nanocrystalline Thin Magnetic Films/B. A. Belyaev [et al.] // Russian Physics Journal, 2019. т.Vol. 61,N Is. 10.-С.1798-1805
3.

Mossbauer spectroscopy study of the superparamagnetism of ultrasmall ε-Fe2O3 nanoparticles/Y. V. Knyazev [et al.] // JETP Letters, 2018. т.Vol. 108,N Is. 8.-С.527-531
4.

Overcoming the adverse effects of substrate on the waveguiding properties of plasmonic nanoparticle chains/I. L. Rasskazov [et al.] // Journal of Applied Physics:American Institute of Physics, 2016. т.Vol. 119,N Is. 4.- Ст.043101
5.

Size dependent magnetic and magneto-optical properties of Ni0.2Zn0.8Fe2O4 nanoparticles/O. A. Li [et al.] // Journal of Magnetism and Magnetic Materials:Elsevier, 2016. т.Vol. 408.-С.206-212
6.

Thermite synthesis and characterization of Co-ZrO2 ferromagnetic nanocomposite thin films/V. G. Myagkov [et al.] // Journal of Alloys and Compounds:Elsevier, 2016. т.Vol. 665.-С.197-203
7.

Light transmission of polymer-dispersed liquid crystal layer composed of droplets with inhomogeneous surface anchoring/V. A. Loiko [et al.] // Optics and Spectroscopy:MAIK Nauka-Interperiodica / Springer, 2016. т.Vol. 120,N Is. 1.-С.143-152
8.

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
9.

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
10.

Magnetic properties of heat treated bacterial ferrihydrite nanoparticles/D. A. Balaev [et al.] // Journal of Magnetism and Magnetic Materials:Elsevier, 2016. т.Vol. 410.-С.171-180
11.

Sadreev A. F. Enhancement of Rayleigh scattering in a two-dimensional Fabry-Perot resonator loaded with impurities/A. F. Sadreev // Journal of the Optical Society of America A: Optics Image Science, and Vision:Optical Society of America, 2016. т.Vol. 33,N Is. 7.-С.1277-1282
12.

Identification of ε-Fe2O3 nano-phase in borate glasses doped with Fe and Gd/O. S. Ivanova [et al.] // Journal of Magnetism and Magnetic Materials:Elsevier, 2016. т.Vol. 401.-С.880-889
13.

Size effects in the magnetic properties of ε-Fe2O3 nanoparticles/A. A. Dubrovskiy [et al.] // Journal of Applied Physics:American Institute of Physics, 2015. т.Vol. 118,N Is. 21.- Ст.213901
14.

Size control in the formation of magnetite nanoparticles in the presence of citrate ions/V. L. Kirillov [et al.] // Materials Chemistry and Physics:Elsevier Science, 2014. т.Vol. 145,N Is. 1-2.-С.75-81
15.

Synthesis and electronic properties of β-RbNd(MoO4)2/V. V. Atuchin [et al.] // Asian Journal of Chemistry, 2014. т.Vol. 26,N No. 5.-С.1284-1286
16.

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
17.

Dynamics of self-organized aggregation of resonant nanoparticles in a laser field/V. V. Slabko [et al.] // Applied Physics B: Lasers and Optics:Springer, 2014. т.Vol. 117,N Is. 1.-С.271-278
18.

Spherical magnetic nanoparticles fabricated by laser target evaporation/A. P. Safronov [et al.] // AIP Advances:American Institute of Physics, 2013. т.Vol. 3,N Is. 5.- Ст.052135
19.

Superconductivity in repulsive fermi-systems at low density/M. Y. Kagan [et al.] // Journal of Superconductivity and Novel Magnetism:SPRINGER, 2013. т.Vol. 26,N Is. 9.-С.2809-2815
20.

Morozov E. V. MRI Comparative Study of Container Geometry Impact on the PMMA Spheres Sedimentation/E. V. Morozov, O. V. Shabanova, O. V. Falaleev // Applied Magnetic Resonance, 2013. т.Vol. 44,N Is. 5.-С.619-636
 

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