General list of projects and their description
Please pay your attention to the fact that this is a general list, i.e. a database of all projects intended for the International Student Practice.
If you are looking for a particular list of projects available for the Stage you are taking part in, please see the webpage of your Stage.
JINR University Centre (UC)
№ | Supervisor | Name of the project | |
1. | D. Belozerov | Electronics hands-on training | |
2. | R. Pivin M. Nozdrin |
Controls & Vacuum hands-on training | |
3. | K. Verlamov | RF technology hands-on training | |
4. | K. Gikal K. Papenkov |
Pixel detector Medipix MX-10 |
Flerov Laboratory of Nuclear Reactions (FLNR)
№ | Supervisor | Name of the project | |
1. | O. Orelovitch | Scanning electron microscopy methods in the study of micro- and nano-objects | |
2. | G. Kaminski | β-delayed charged particle spectroscopy by the OTPC technique and practical training with gas systems for gaseous detectors |
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3. | Yu. Panebrattsev A. Strekalovsky |
Virtual laboratory of nuclear fission and LIS setup | |
4. | V. Rachkov | Study of heavy-ion elastic scattering within classical and quantum optical model | |
5. | L. Krupa V. Vedeneev |
Determination of masses of the super heavy elements in the experiments on synthesis of 112 and 114 elements using the reactions 48Ca+242Pu and 48Ca+244Pu |
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6. | L. Krupa V. Vedeneev |
Systematic determination of cross sections for the production of proton-rich evaporation residues near the neutron N=126 shell closure in fusion reactions |
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7. | L. Krupa V. Vedeneev |
Production and spectroscopic investigation of new neutron-rich isotopes near the neutron N=126 shell closure using the multinucleon transfer reactions |
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8. | L. Krupa V. Vedeneev |
Monte-Carlo simulation of fusion and multinucleon transfer reactions in the MEDIPIX detector using the GEANT4 | |
9. | L. Krupa V. Vedeneev |
Development and testing of a new cryogenic gas-filled catcher for the MASHA | |
10. | M. Gustova | X-Ray Fluorescence Analysis (XRF) | |
11. | Yu. Sobolev | Single-crystal gamma scintillation spectrometer | |
12. | E. Kozulin K. Novikov |
Measurement of mass-energy distributions of fission fragments using the time-of-flight method | |
13. | V. Skuratov | Irradiation testing of nuclear ceramics and oxides with heavy ions of fission fragment energy | |
14. | V. Skuratov | Measurements and analysis of depth-resolved photoluminescence spectra in swift heavy ion bombarded insulators | |
15. | A. Svirikhin | Neutron emission from spontaneous fission of heavy elements at FLNR | |
16. | V. Chudoba | SIMONE: Tool for simulations and data analysis of low-energy nuclear physics experiment | |
17. | A. Voinov | Preliminary processing of the signals in a nuclear physics experiment | |
18. | S. Lukyanov K. Mendibaev |
Ge(Li)-detector for energy measurements of gamma-activity | |
19. | S. Lukyanov K. Mendibaev |
Study of the operation principle of X-ray detectors, and Mosley's law in action | |
20. | S. Bogomolov | Electron Cyclotron Resonance ion sources hands-on training | |
21. | V. Mironov | Numerical studies of electron cyclotron resonance ion source | |
22. | V. Smirnov D. Aznabayev |
TOF measurement of the charged particles using the MCP detector | |
23. | S. Zemlyanoy | GALS – new setup for transfer reaction products on-line separation by selective laser ionization | |
24. | E. Gazeeva | Neutron spectrometer for experiments with radioactive beams on the ACCULINNA-2 fragment separator |
Frank Laboratory of Neutron Physics (FLNP)
№ | Supervisor | Name of the project | |
1. | N. Bazhazhina | Non-destructive analysis of element and isotope composition by neutron spectroscopy methods | |
2. | M.-L. Craus | Transport phenomena and magnetic/crystalline structure of manganites | |
3. | Sh. Zeinalov | Prompt fission neutron investigation with Frisch-gridded twin back-to-back ionization chamber | |
4. | Sh. Zeinalov O. Sidorova |
Position sensitive twin-ionization chamber for fission fragment spectroscopy and neutron imaging | |
5. | S. Sumnikov | Precision investigation of modern crystalline materials by neutron diffraction method | |
6. | I. Zinicovscaia | Neutron activation analysis and related analytical techniques in environmental and life sciences | |
7. | A. Dmitriev W. Badawy |
Nuclear and related analytical techniques in archaeological and ecological studies | |
8. | S. Kichanov N. Belozerova |
Сrystal and magnetic structure of advanced oxide materials: neutron diffraction studies | |
9. | S. Kichanov I. Zel |
Neutron radiography and tomography method: practical applications | |
10. | T. Ivankina | Comparative quantitative analysis of quartz textures in monomineral and multiphase rocks using neutron diffraction at IBR-2 | |
11. | Yu. Nikitenko V. Zhaketov |
Studying nanostructure magnetism with the use of polarized neutron reflectometry | |
12. | Kh. Kholmurodov | Molecular Dynamics of Nanosized Models (Nano-Bio-Technology Systems) Combined with Experiments on Neutron Scattering and Optical Spectroscopy |
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13. | K. Mamatkulov | Raman and CARS microspectroscopy | |
14. | Ye. Arynbek | Investigation of lipid-protein system by Raman Spectroscopy and Molecular Dynamics | |
15. | M. Dima | Fourier methods: classical and quantum |
Dzhelepov Laboratory of Nuclear Problems (DLNP)
№ | Supervisor | Name of the project | |
1. | I. Alexandrov K. Afanasyeva |
PCR-assay of intragenic DNA lesions induced by ionizing radiation at the vestigial gene of Drosophila melanogaster | |
2. | A. Molokanov G. Mitsyn A. Agapov |
Measurements of the depth-dose distributions of the therapeutic proton beam | |
3. | E. Kravchenko | Genome “dactyloscopy” (DNA finger-printing) and gene expression: Polymerase Chain Reaction (PCR) and Real Time Polimerase Chain Reaction (RT-PCR) in action |
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4. | Said Abdel Shakour | Radiation Protection and the Safety of Radiation Sources |
Bogoliubov Laboratory of Theoretical Physics (BLTP)
№ | Supervisor | Name of the project | |
1. | O. Solovtsova A. Sidorov |
Numerical Estimates of the Mellin-Barnes Integrals Based on the Contour of the Stationary Phase | |
2. | Yu. Shukrinov | Computer simulation of tunneling characteristics of superconducting nanostructures | |
3. | A. Arbuzov | Studying Coleman-Weinberg effective models for microscopic description of the Higgs mechanism | |
4. | Ya. Shnir | Numerical methods in theory of topological solitons |
Laboratory of Radiation Biology (LRB)
№ | Supervisor | Name of the project | |
1. | E. Lesovaya |
Design of the gamma counter local shield for the installation intended for identification of hidden explosives and drugs |
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2. | T. Bulanova E. Kulikova |
Detection and study of the formation and repair of DNA double-strand breaks after irradiation | |
3. | B. Munkhbaatar B. Lkhagvaa |
Computer Modeling of Radiation Biophysics using the Geant4 | |
4. | Open field behavior and habituation in rats irradiated |
Veksler and Baldin Laboratory of High Energy Physics (VBLHEP)
№ | Supervisor | Name of the project | |
1. | E. Kokoulina | Puzzles of multiplicity | |
2. | E. Kokoulina | Soft photons at U-70 and Nuclotron | |
3. | P. Zarubin V. Rusakova A. Zaysev |
Study of alpha-particle states in the fragmentation of relativistic nuclei (BECQUEREL project) | |
4. | V. Ladygin | Study of the analysing powers in deuteron-proton elastic scattering at Nuclotron |
Laboratory of Information Technologies (MLIT)
№ | Supervisor | Name of the project | |
1. | B. Saha | Numerical and analytical calculations in gravitation and cosmology | |
2. | Yu. Kalinovsky | Modeling of the behavior of particles in hot nuclear matter | |
3. | T. Solovyova | ROOT package in High Energy Physics tasks | |
4. | G. Ososkov A. Nechaevskiy A. Uzhynskiy |
Machine learning applications for plant disease detection | |
5. | I. Pelevanyuk | Advanced system administration for fast server configuration | |
6. | N. Kutovskiy | Grid and Cloud technologies. Practical usage of EMI, DIRAC, OpenNebula middleware | |
7. | I. Sarkhadov | Numerical modeling of thermal processes arising in the materials under exposure to pulsed ion beams and single high energy ions |
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8. | O. Chuluunbaatar Yu. Popov |
Calculation of the strong field approximation term for the hydrogen atom excitation in intensive laser field |