Tomsk Universities projects proposal for RFBR-NSC contest # 1 Research field C. New Material 2. Opto-electronic and photonic materials, biomaterials, materials for energy and environment Project title The creation of nonlinear microstructured multimode fiber for high-speed digital communication channels Summary The project is aimed at increasing the optoelectronics components with a view to enhancing the capacity of digital fiber-optic communications systems with multimode fiber, with the help of nonlinear interactions of waveguide modes and a mode of packages applicable to fiber without changing shape. The purpose of the project is to develop a mathematical model of the spread of soliton-like light-mode packages in nonlinear multimode microstructured or photon-crystal (PC) optical fibers; and study of the seizure of individual modes of specified package covering on the multimode with a constant group delay without shape changing. The project is aimed at laying the foundation for technology manufacturing of heat- and energy-saving coatings, pigments of which are represented as powders with controllable phase transitions (PT). The physical essence of heat- and energy-saving of such coatings is in that there is an abrupt change of emissivity occurs in pigment phase transitions (ε) from the values inherent in dielectrics (ε = 0,7 - 0,96) up to the values inherent in the metal (ε = 0,1 - 0,4) on a curve close to form a hysteresis loop. The same law measures radiated power. If the temperature of the object, which uses such coating, decreases compared to operating temperature, radiation ability will decrease, leading to a reduction in radiant power. In this case, heat- and energy-saving coating will become heat - and
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Contact person Tomsk State University of Control System and Radioelectronic
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C. New Material Heat-saving coating 1. Energy-related technology (carbon dioxide emission control and clean alternative energy sources, including bio-fuels, solar cells, fuel cells and hydrogen energy)
Tomsk State University of Control System and Radioelectronic
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Research field
Project title
Summary energy-efficient coating. In case of an increase in temperature of the object emissivity will increase, leading to an increase in radiated power. Taken together, under the condition of temperature deviation from normal the working surface values will serve as thermo stabilizing cover.
Contact person
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C. New Material 1. Energy-related technology (carbon dioxide emission control and clean alternative energy sources, including bio-fuels, solar cells, fuel cells and hydrogen energy) 2. Opto-electronic and photonic materials, biomaterials, materials for energy and environment E. Biotechnology and Medicine 1. Natural
The modern theory of automatic control on nonlinear, pulse-modulation systems of power electronics
It is basic research in the mathematical foundations of analyzing the performance of pulse-modulation systems of power electronics requiring high precise characteristics. It is aimed at preparation of basic theoretical framework for analysis and synthesis of high quality devices and systems management parameters of electrical energy; the development of mathematical and programming mechanism to study the dynamics of modern power electronics devices.
Tomsk State University of Control System and Radioelectronic
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Optoelectronic and Photonic materials, biomaterials, materials saving energy and Environment
Creating of high quality devices and systems management parameters of electrical energy required for the production of polycrystalline silicon. The existence of mathematical and programming mechanism to study the dynamics of modern power electronics devices of this type ensures the maintenance of work regimes for growth setup with high accuracy and infallibility. The proposed project is up to develop and study methodology and highly complex multi-radiometric methods of measurement of biological objects (such as human tissues)
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Tomsk State University of Control System and Radioelectronic
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The development of method and biometric system of remote cancer
Tomsk State University of Control System
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Research field products and medicine
Project title disease revelation at early stage
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thermodynamic temperature’s radio-depth profile. Using of and infrared sensors in this situation is not possible. Contact Radioelectronic measurement using the tiny sensor placed in the body cavity of biological objects leads to large errors resulting from the creation of the body cavity. Radio waves have great penetrating ability and biological tissues are transparent for the waves of ultra high frequency. The main diagnostic feature of the proposed method is to identify the high temperature inside the tissue in the event of an enhanced metabolism of cells (during cancer disease). The project focuses on the development of algorithms for analyzing and defining component of the atmosphere and creation of portable radiometric systems (polarimeter), a new type that can measure the spatial structure of the electromagnetic field and operate with high accuracy in difficult climatic conditions. Using microwave techniques provides information different than using only the optical and infrared ranges. The merits of microwave diagnosis is an opportunity to obtain information at any time, in various weather conditions, regardless of sunshine, virtually unlimited range of detection. Tomsk State University of Control System and Radioelectronic
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E. Biotechnology and Medicine 2. Biodiversity and ecology 3. Enviromental biology
Radiowave remote definition of light gas component of atmosphere
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Engineering and Applied Sciences
Investigation of new-type electroluminescent (EL) capacitors on the basis of semiconductor substrate, SiO2 and
The project is directed on development of the integration device Tomsk State using light emission and bio-labeling University technology on silicon or GaAs substrates. The light emission (blue light) mechanism is controlled by new-type electroluminescent (EL) capacitors fabricated on the
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Project title Ga2O3 oxide EL layers doped with different impurities.
Summary silicon and GaAs substrates. The thin film of SiO2 or Ga2O3 was covered on the substrate and the Sn, Tm and Ce atom was doped on the thin-film layer to obtain the blue, green or red light. The mechanism of luminescence excitation in these films is not studied. In the offered project physical principles of operation of EL structures based Ga2O3 : Cr (Fe, Mn, Sn) fabricated on Si (or other semiconductor substrates) will be developed.
Contact person
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Electronic and optical properties on the intrinsic defects in nitrides (BN, AlN, GaN, AlN))
The Project provides the development of the fundamental Tomsk State methods of research of the electronic structure and the optical University properties of intrinsic defects and clusters on their basis in nitrides III-N. With application of modern theoretical methods of researches - method of the pseudopotential and the density-functional method, the expanded supercell in view of symmetry of a crystal lattice the connection of the deep levels with the quantum-dimensional states of the clustered defects will be revealed; the physical models of a Fermi - level pinning in defective semiconductors are constructed; the features of electronic structure and the optical spectra of the points and the clustered defects, and also the law of change of these properties are investigated depending on the sizes of the defective clusters. Aspect-Oriented Programming is considered as the mean Tomsk State to implement security policies in computer systems. The way of University implementing Aspect-Oriented Programming by means of
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Implementation of security policies in computer systems by
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Research field
Project title means of aspect-oriented programming. G.P. Agibalov, Tomsk State University
Summary Meta-Object Protocols is used. Technique of enhancing traditional programming languages to fit Aspect-Oriented paradigm is proposed. With this technique Aspect-Oriented Programming Language AspectTalk is created. Virtual machine that evaluates programs in intermediate language into which programs from AspectTalk are translated is implemented. Design and development of computer system and security policy in this language could be separated. The main benefit from this approach is ease of replacement or modification of security policy.
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Discrete functions on semilattices with applications in control and information security systems.
Necessary and sufficient conditions of completeness and Tomsk State exppressability are stated for quasimonotonic functions defined University on finite upper semilattices. Algorithmic tests are given for these functions to be realizable by asynchronous circuits composed of switching components like resistors and transistors including circuits with the property of functional stability in the presence of hazards. Some algorithms are proposed for the synthesis of such circuits. Cryptographic properties of functions on semilattices are investigated too: correlation and algebraic immunity, nonlinearity, propagation criteria and so on. In creation of fluorescent lidar and its modernization, we Institute of pursued the possibility of simultaneous measurement of the Atmospheric optical characteristics of vegetation, its secondary metabolites, Optics SB RAS and, at the final stage, bioaerosols. The optimal wavelength of laser source of fluorescent phytolidar must be in the range 260–270 nm. This requirement is ideally met by fourth harmonic of
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Monitoring of pathogenic organic aerosol emissions in surface atmosphere with fluorescent lidar
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Research field New Materials
Project title Establishment of a pilot-scale production of nano-structural ceramic and composite materials
Summary yttrium aluminum garnet laser at 266 nm.
Contact person
The offered technology for production of nanoceramic Tomsk articles and nanocomposites is based on new methods of dry Polytechnic compacting of complex shape articles from ceramic University nanopowders with the use of developed methods of friction force regulation in the pressed nanopowder, including the use of ultrasonic action. There are synthesized optimum one-dimensional and multidimensional wavelet bases, which structure is matched with ultrawideband pulse radiation of antenna. Corresponding numerical algorithms are analyzed as applied to numerical simulation of processing algorithms of signals scattered by geophysical objects. There is studied a feature space of geophysical objects, which are irradiated by ultrawideband electromagnetic signals, with taking into account vector properties of scattered electromagnetic fields. Estimation algorithms of a medium parameters, signals compression and visualization are considered. Efficiency of the suggested functional bases are analyzed for problems of processing and visualization of geophysical data obtained under subsurface probing. The flexible electronics becomes an emerging technology worldwide for numerous industrial applications such as liquid crystal displays (LCDs), flexible cell phones, touch panels, e-papers, e-books, electronic signage, radio frequency
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Investigations of multivariate functional bases based on wavelet transformations, which are matched with ultrawideband electromagnetic radiation of antenna, intended for presentation of multidimensional feature space of material media and geophysical objects under radar sensing
Tomsk State University of Control System and Radioelectronic
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Engineering and Applied Sciences
Low Temperature Deposition Process and Material Characterization of
Tomsk State University
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Research field
Project title Transparent Conductive Oxide Thin Films on Flexible Substrates
Summary identification (RFID) devices, thin film solar cells, wearable electronics, and so on. It is believed that the influence and cost-effectiveness of improved manufacturability and material processability of the flexible electronics will be enormous impact in our life and stand as a vital position to prevail irresistible waves of next industrial revolution in the upcoming decade. Though the transparent conductive oxide (TCO) films have been heavily used in the current display technology and optoelectronics, yet the material are relatively costly due to the fact they are normally prepared in the vacuum system. Khemo systematical studying of plants orders purposeful search of sources which have biologically valuable active substances. Fitoecologicaldisteroids being structural analogues hormones of a molt and a metamorphosis of insects are widely widespread in flora Ability of plants to synthesize the connections breaking ability to live of insects-fitofags and nontoxic for mammals opens opportunities for development of new biological methods, pest control and reception of steadier grades of plants. Fitoecologicaldisteroids are basis of anabolic preparations, adoptically, homoreologically, radioprotectorically, toning up actions. The proposal is aimed on the investigation of nonlinear optical effects within surface layers of lithium niobate crystals doped with metal ions (Fe, Cu, Ce, Zn, Mg, In, Mn, Co, et al.) to develop the elements of technology and to create nonlinear optical structures with both, bulk and waveguide configurations. These
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Khemo systematical studying plants of families Asteraceae and Caryophyllaceae in natural flora of Taiwan as a way of forecasting and search of steroid biologically active connections.
Tomsk State University
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Nonlinear interactions of light waves in surface-doped lithium niobate crystals and in optical waveguides on
Tomsk State University of Control System and Radioelectronic
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Research field
Project title its basis
Summary structures may be used for the light frequency conversion, the reshaping of laser beams in the necessary way, for the design of photorefractive elements and devices which can control light by coherent and incoherent light. The main direction of its research are working out of new technologies of resort rehabilitation and restoring therapy, organization of introduction of modern technologies of rehabilitation and direction of science-systematic work in sanatoriums and health resorts of region. In order to solution of problems in development of treatment in health resorts in Siberian region, basis of data of use of medical factors in Siberia was formed, the list of health resorts and medical-sanitary places and cadastre of natural medical resources in Siberian region were published. Use of expiratory air as a material under examination attracts especial interest. Human expiratory air contains about 600 volatile compounds including endogenic molecules-biomarkers, i.e. produced in the organism. Formation and emission mechanisms of these molecules-biomarkers have special characteristics which allow to study both normal and pathologic processes. Laser spectroscopy methods ensure high sensitivity and selectivity of analysis of gaseous components in the expiratory air.
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Muds of Tomsk Region, supply and complex use in medical preventive institutions and in sanitative centres of Russia and Taiwan
Research Institute of Balneology and Physiotherapy of the Russian Federation Ministry of Public Health
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Noninvasive methods of express-diagnostics of inflammatory processes in respiratory organs on the basis of spectral analysis of expiratory air content by means of multiwave optical gas analyzer Elaboration of genetic markers of arterial hypertension development during
Siberian State Medical University (SSMU)
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Aim: to identify genetic markers of arterial hypertension SSMU development during pregnancy. Tasks: 1. to study daily arterial pressure profile of pregnant women
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Project title pregnancy
Summary with arterial hypertension. 2. to estimate functional condition of vascular endothelium of the pregnant women with arterial hypertension. 3. to study nitrogen oxide concentration in pregnant women with arterial hypertension. 4. to study polymorphism of genes NOS1, NOS2 and NOS3 of pregnant women with arterial hypertension. 5. taking into account all the collected results - to formulate risk factors for arterial hypertension development during pregnancy.
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Studying the effect of polysaccharides with different chemical structure on polarization of lymphocytes with an aim to create new medicines
The project is planned to result in getting new evidence on SSMU interconnection between polysaccharides structure and the type of immune response. From theoretical point of view, it will allow to get new data about the nature of antigen and its carrier-microorganism (or another pathogen). In practice, today the search for pharmacological agents that enable to regulate immune response development presents a great interest for designing new medicines aimed at many immunity-related diseases treatment. The influence of the land surface is relayed through surface Institute of evaporation and associated surface cooling (dependent on soil moisture), Atmospheric terrain, and vegetation cover. Soil moisture observations are sparse and even Optics SB RAS precipitation observations that might be used to derive estimates of surface wetness are inadequate. Remote sensing can provide an alternative means of observing spatial and temporal variations in surface wetness over the region. Application of the passive methods connected with registration of indirect signs, directly connected with soil moisture variations is especially interesting Researches with the goal to substitute sintered tin bronze by sintered Institute of
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Soil Moisture Studying addressed the goal development and evaluation of remotely sensed land surface products for Terrestrial Hydrology Sintered aluminium
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Research field bronze
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Summary
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copper alloys which would not contain tin renew in Russia and abroad from Strength Physics time to time. The point is that tin bronze is relatively deficient and expensive and Materials due to the presence of tin in it. A perspective main alloying additive to copper Science, SB RAS is aluminium, which is cheaper 5 times than tin per a volume unit. Concerning strength, heat proof, resistance to corrosion, oxidisation and wear, cast aluminium bronzes exceed tin bronzes and they are widely used in machine building. The technologies, concerned with the development of Institute of alternative energy sources, such as solar cells translating light Petroleum energy into electrical power now came to the attention of Chemistry researchers. Solar cells on basis of organic semiconductors which have unique properties to distinguish them from solar cells based on inorganic semiconductors are of particular interest. Having a wide spectral characteristic of photosensitivity (200–1000 nm) they show a high photosensitivity both in the visible and UV-range of spectrum. Besides they are easy-to-make and practically undegraded.
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Solar cells based on organic semiconductors
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System of vision in complex weather conditions
The system allows to visualize space and to find out objects, screening from the observer the disseminating environment (a smoke, a fog, a snowfall, a rain) up to optical thickness 4-6. The active pulse system of supervision ZOND can be used in security systems for monitoring objects and constructions, and also for control of travel facilities of a various kind in extreme conditions of vision. Unlike usual television systems the given system works in a locator mode, allowing to look
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Tomsk State University of Control System and Radioelectronic
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through space on layers and to define distance up to observable objects.
25 Affinity purification of recombinant proteins by Encapsulated Magnetic Nanoparticles. Siberian State Medical University
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