关注
Natalia Kamanina
Natalia Kamanina
Vavilov State Optical Institute
没有经过验证的电子邮件地址
标题
引用次数
引用次数
年份
Fullerene-dispersed nematic liquid crystal structures: dynamic characteristics and self-organization processes
NV Kamanina
Physics-Uspekhi 48 (4), 419, 2005
1052005
Influence of operating conditions and interface properties on dynamic characteristics of liquid-crystal spatial light modulators
NV Kamanina, NA Vasilenko
Optical and Quantum Electronics 29, 1-9, 1997
1021997
Polyimide-fullerene nanostructured materials for nonlinear optics and solar energy applications
NV Kamanina, SV Serov, NA Shurpo, SV Likhomanova, DN Timonin, ...
Journal of Materials Science: Materials in Electronics 23, 1538-1542, 2012
862012
Reverse saturable absorption in fullerene-containing polyimides. Applicability of the Förster model
NV Kamanina
Optics communications 162 (4-6), 228-232, 1999
761999
Mechanisms of optical limiting in π-conjugated organic system: fullerene-doped polyimide
NV Kamanina
Synthetic Metals 127 (1-3), 121-128, 2002
722002
Absorption spectra and optical limiting of the fullerene–polyimide system
NV Kamanina, LN Kaporskii, BV Kotov
Optics communications 152 (4-6), 280-282, 1998
691998
Effect of fullerene doping on the absorption edge shift in COANP
N Kamanina, A Barrientos, A Leyderman, Y Cui, V Vikhnin, M Vlasse
Molecular Materials 13 (1-4), 275-280, 2000
662000
Optical limiters and diffraction elements based on a COANP-fullerene system: Nonlinear optical properties and quantum-chemical simulation
NV Kamanina, EF Sheka
Optics and Spectroscopy 96, 599-612, 2004
642004
Mechanisms of optical limiting in fullerene-doped π-conjugated organic structures demonstrated with polyimide and COANP molecules
NV Kamanina, AI Plekhanov
Optics and Spectroscopy 93, 408-415, 2002
632002
Nano-, pico-and femtosecond study of fullerene-doped polymer-dispersed liquid crystals: holographic recording and optical limiting effect
N Kamanina, S Putilin, D Stasel’ko
Synthetic Metals 127 (1-3), 129-133, 2002
572002
Refractive index of organic systems doped with nano-objects
NV Kamanina, DP Uskokovic
Materials and Manufacturing Processes 23 (6), 552-556, 2008
552008
Laser-induced change in the refractive index in the systems based on nanostructured polyimide: comparative study with other photosensitive structures
NV Kamanina, A Emandi, F Kajzar, AJ Attias
Molecular Crystals and Liquid Crystals 486 (1), 1/[1043]-11/[1053], 2008
552008
Polyimides: New properties of xerographic, thermoplastic, and liquid-crystal structures
YA Cherkasov, NV Kamanina, EL Alexandrova, VI Berendyaev, ...
Xerographic Photoreceptors and Organic Photorefractive Materials IV 3471 …, 1998
511998
Effect of CdSe/ZnS semiconductor quantum dots on the dynamic properties of nematic liquid-crystalline medium
NA Shurpo, MS Vakshtein, NV Kamanina
Technical Physics Letters 36, 319-321, 2010
502010
Fullerene-doped π-conjugated organic systems under infrared laser irradiation
NV Kamanina, IV Bagrov, IM Belousova, SO Kognovitskii, AP Zhevlakov
Optics communications 194 (4-6), 367-372, 2001
462001
Frequency conversion of picosecond radiation in fullerene-doped polyimide films and colloidal metals
RA Ganeev, AI Ryasnyansky, NV Kamanina, IA Kulagin, MK Kodirov, ...
Journal of Optics B: Quantum and Semiclassical Optics 3 (3), 88, 2001
372001
Variation of the orientational order parameter in a nematic liquid crystal-COANP-C70 composite structure
NV Kamanina, AV Komolkin, NP Yevlampieva
Technical physics letters 31, 478-480, 2005
312005
Control of the IR-spectral shift via modification of the surface relief between the liquid crystal matrixes doped with the lanthanide nanoparticles and the solid substrate
NV Kamanina, YA Zubtcova, AA Kukharchik, C Lazar, I Rau
Optics Express 24 (2), A270-A275, 2016
302016
Nanostructured materials for optoelectronic applications
NV Kamanina, PY Vasilyev, SV Serov, VP Savinov, KY Bogdanov, ...
Acta Physica Polonica A 117 (5), 786-790, 2010
302010
Influence of solid-liquid crystal interface on characteristics of liquid crystal cells
NV Kamanina, VI Berendyaev
PROCEEDINGS-SPIE THE INTERNATIONAL SOCIETY FOR OPTICAL ENGINEERING, 154-158, 1998
281998
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