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Current scientific research on Electrostatic accelerator EG-5 in JINR

Alexander DoroshkevichDubna State University, Dubna, 141980, RussiaE. ChávezFísica Nuclear y Aplicaciones de la Radiación Instituto de Física, UNAM, MexicoEdwin Pedrero GonzálezInstitute of Materials Science and Technology (IMRE) of the University of Havana, Havana, CubaZhanna V. MezentsevaJoint Institute for Nuclear Research, Dubna, 141980, RussiaБ. Л. ОксенгендлерInstitute of Materials Science of the Academy of Sciences of the Republic of Uzbekistan, Tashkent, UzbekistanT. Yu. ZelenyakJoint Institute for Nuclear Research, Dubna, 141980, RussiaAlisa A. TatarinovaJoint Institute for Nuclear Research, Dubna, 141980, RussiaPhan Luong TuanIrradiation Center, Vietnam Atomic Energy Institute, Hanoi, VietnamVesna TeofilovićFaculty of Technology, University of Novi Sad, Novi Sad 21000, SerbiaZoran IvanovichLaboratory of Physics, INN Vinča, University of Belgrade, Belgrade 11351, SerbiaCarmen MîţăFaculty of Chemistry, “Alexandru Ioan Cuza” University of Iasi, Iasi 700506, RomaniaDiana MardareFaculty of Physics, “Alexandru Ioan Cuza” University of Iasi, Iasi 700506, RomaniaNicoleta CorneiFaculty of Physics, “Alexandru Ioan Cuza” University of Iasi, Iasi 700506, RomaniaMatlab N. MirzaevAzerbaijan State Oil and Industry University, Scientific-Research Institute Geotecnological Problems of Oil, Gas and Chemistry, AZ1010 Baku, AzerbaijanNurbol AppazovLaboratory of Engineering, Korkyt Ata Kyzylorda University, Kyzylorda 120014, KazakhstanAndriy K. KirillovJoint Institute for Nuclear Research, Dubna, 141980, RussiaI.A. ChepurchenkoJoint Institute for Nuclear Research, Dubna, 141980, RussiaA.I. KruglyakJoint Institute for Nuclear Research, Dubna, 141980, RussiaYuliya AleksiayenakJoint Institute for Nuclear Research, Dubna, 141980, RussiaV.K. KsenevichState Scientific and Production Association "Scientific-Practical Center of the National Academy of Sciences of Belarus", Minsk, Republic of BelarusAleksandr V. MaletskiiGalkin Donetsk Institute for Physics and Engineering, 83114 Donetsk, RussiaAltyn Zh. AltynbasovaJoint Institute for Nuclear Research, Dubna, 141980, RussiaAnthony Carlos Perez MorenoJoint Institute for Nuclear Research, Dubna, 141980, RussiaRafael IsayevIDDA, Department of Nuclear Research, Baku, AZ1069, AzerbaijanMahmoud A. A. IbrahimJoint Institute for Nuclear Research, Dubna, 141980, RussiaSilvia María Fortuné FábregasJoint Institute for Nuclear Research, Dubna, 141980, RussiaLuis Miguel Ledo PeredaCenter for Technological Applications and Nuclear Development (CEADEN), Havana, CubaI. O. SimonenkoDubna State University, Dubna, 141980, RussiaV. A. KinevJSC "Research and Production Enterprise "Integral", Dubna, RussiaA. R. TameevFrumkin Institute of Physical Chemistry and Electrochemistry Russian Academy of Sciences, Moscow, 119071, Russia
EPJ Web of Conferencesjournal2025en
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Annotatsiya

The electrostatic accelerator (ESA) EG-5 has been operating stationary in the Nuclear Physics Department of the Nuclear Physics Department of JINR (Dubna) since 1965. Along with an experimental nuclear reactor and a pulsed accelerator IREN, ESA EG-5 occupies its own unique niche as part of a complex of nuclear physics installations. The beams of high-energy particles obtained using EG-5 have the highest energy stability (± 15 keV per 2 MeV), due to which it is possible to conduct unique studies of the elemental composition of solids, including depth profiling, conducting studies of fast neutron nuclear reactions, etc. ESA EG-5 is a universal research device that allows conducting both studies of the elemental composition and physical, chemical and biological modification of objects of inanimate and living nature, respectively. EG-5 electrostatic accelerator at FLNP JINR, used to produce intense fluxes of fast particles (H + , He + , D + ) and neutrons; for elemental analysis of surface layers of various objects using beams of α-particles, using non-destructive techniques RBS, ERD and PIXE; for implantation of ions into the surface layers of various materials; to study the radiation resistance of materials. Unique opportunities will appear after the implementation of a microbeam spectrometer at the EG-5 accelerator in period since 2025.

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