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Keyword:SKIF synchrotron
Russia's SKIF Synchrotron Considers Building Enterprise-Funded Experimental Stations
The Siberian Circular Photon Source (SKIF) synchrotron project in Russia is considering the construction of enterprise-funded experimental stations. Andrei Bukhtiyarov, Deputy Director of the SKIF Shared Use Center, stated that this idea is expected to advance after the first-phase experimental stations are put into operation and their operational capabilities are verified. According to reports, construction of the SKIF synchrotron was completed in June 2026. Once the facility becomes operational, it will help researchers obtain high-precision data on the internal structure and behavior of materials. The first phase of the SKIF project, located near Novosibirsk, plans a total of 7 experimental stations, all scheduled to become operational by August 2027, when research teams can begin conducting relevant experiments. Bukhtiyarov...
2026-09-09
Russia's EVRAZ Plans to Develop High-Performance Railway Rails Using SKIF Synchrotron Radiation Platform
Russian railway infrastructure component manufacturer EVRAZ PJSC plans to cooperate with the SKIF Collective Use Center to develop new alloys and high-performance rails using synchrotron radiation experimental capabilities, aiming to improve the mechanical properties and operational reliability of rails. At a roundtable discussion on "Development of New Structural and Tool Materials and Mechanical Engineering Technologies Using Synchrotron Radiation" held during the Technoprom 2026 forum, participating experts discussed the application prospects of the SKIF Collective Use Center in the development of high-quality rolled metal products. EVRAZ stated that Russia's railway operating environment is complex, with long line distances, numerous mountain routes, prominent low-temperature conditions, coupled with growing freight volumes, placing higher demands on steel materials...
2026-09-07
Russian Academician Says SKIF Synchrotron Light Source Will Not Produce Radionuclides, Safe and Controllable in Operation
Yevgeny Levichev, an academician of the Russian Academy of Sciences and director of the Collective Use Center of the Siberian Circular Photon Source (SKIF), recently stated that synchrotron light sources, including SKIF located near Novosibirsk, are electrophysical equipment with safe and controllable operation that poses no threat to personnel even in the event of a malfunction. Levichev said that unlike facilities such as nuclear power plants, synchrotron light sources do not generate isotopes or radionuclides in their systems. In the event of an anomaly, the beam is reset, and the facility's risk level is close to that of ordinary electrical equipment. According to reports, construction of the SKIF synchrotron was completed in June 2026, with an inauguration ceremony held in August. Once the facility is operational...
2026-09-01
Russia's SKIF Synchrotron Announces Criteria for Selecting Future Research Teams
On August 31, Andrei Bukhtiyarov, Deputy Director of the Shared Use Center of the Siberian Circular Photon Source (SKIF) synchrotron, stated that the scientific innovation of research proposals will be one of the key criteria when selecting research teams for future experiments at SKIF. According to reports, the selection process will also focus on the clarity of research ideas and the feasibility of experimental plans. Since some experiments may not be feasible under existing or planned experimental station conditions, applications will first undergo technical review to confirm whether the experiments can be conducted within the facility's capabilities. The SKIF Shared Use Center has established a Scientific Committee to review applications submitted by research teams. The Center plans to...
2026-09-01
First Seven Experimental Stations of Russia's SKIF Synchrotron Planned for Commissioning in Summer 2027
The first seven scientific experimental stations at the Siberian Circular Photon Source (SKIF) shared center, located near Novosibirsk, Russia, are planned to begin beam testing in August 2027. According to the center's relevant official, all experimental station equipment has been fully installed, and experts are currently conducting commissioning work. Construction of the SKIF synchrotron was completed in June 2026. Once the project becomes operational, it will utilize synchrotron radiation to help researchers observe the internal structure of matter, obtaining high-precision data on material structure and behavior, which can serve fundamental research and related industrial R&D. As planned, the Budker Institute of Nuclear Physics of the Siberian Branch of the Russian Academy of Sciences will launch beam operation in the main storage ring in September...
2026-08-28
Russia's SKIF Synchrotron First Scientific User Competition Expected to Launch in Second Half of 2027
The competition to select the first research teams for the Siberian Circular Photon Source (SKIF) synchrotron in Russia is planned for the second half of 2027. Valery Bukhtiyarov, Director of the Boreskov Institute of Catalysis of the Siberian Branch of the Russian Academy of Sciences, stated at the Technoprom-2026 forum held in Novosibirsk that the first open competition will be launched in the second half of 2027. The institute is responsible for commissioning the construction of this large-scale scientific facility. Bukhtiyarov noted that SKIF is scheduled to receive synchrotron radiation and conduct its first experiments in the autumn. Construction of the facility was completed in June 2026, with an opening ceremony held in August 2026. Once operational, SKIF will use synchrotron radiation to help...
2026-08-27
Russia's SKIF Synchrotron Radiation Facility Hailed as a Milestone for Russian Science
On August 13, Russian President Vladimir Putin visited the Koltsovo Science City in Novosibirsk to learn about the operating principles of the Siberian Circular Photon Source (SKIF), a shared-use center. This center is the first facility in a network of modern synchrotron radiation sources being built in Russia, with construction efforts incorporated into the national development program for synchrotron and neutron research and related research infrastructure, covering the period through 2030 and beyond. It was reported that SKIF, with its high-brightness, high-intensity X-ray beams, can serve high-level research in fields such as chemistry, physics, materials science, biology, geology, archaeology, and paleontology. Officials also noted that...
2026-08-14