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Keyword:EPS
Russia's SKIF and China's HEPS Explore Building Joint Synchrotron Radiation Experimental Station
The Siberian Circular Photon Source (SKIF) synchrotron radiation facility in Russia is considering closer cooperation with China's High Energy Photon Source (HEPS), including exploring the construction of a joint experimental station. Yevgeny Levichev, Director of the SKIF Collective Use Center, stated that the Russian side plans to sign cooperation agreements with three synchrotron radiation facilities in China by the end of this year, including the Shanghai Synchrotron Radiation Facility, the Beijing High Energy Photon Source (HEPS), and a synchrotron radiation facility in Hefei. Among these, Russia is particularly interested in advancing joint projects with HEPS, potentially even establishing a joint experimental station. Levichev noted that the Russian and Chinese synchrotron radiation facilities are complementary in terms of energy range, which will facilitate joint experiments by researchers and improve the utilization efficiency of large-scale scientific facilities.
2026-09-02
Lancaster University in the UK receives EPSRC funding to study antimatter production in intense laser pulses
Christopher Arran, a lecturer at Lancaster University and the Cockcroft Institute in the UK, has recently been awarded a three-year New Investigator Award from the UK Engineering and Physical Sciences Research Council (EPSRC) to study electron-positron pair production in the extremely intense electromagnetic fields of high-power lasers. The research focuses on matter-antimatter production processes under intense laser pulse conditions. Similar interactions are believed to exist in extreme cosmic environments, such as near pulsars and black hole accretion disks. Previously, such interactions had only been measured at large particle accelerator facilities such as Stanford University and the European Organization for Nuclear Research (CERN), but the electric and magnetic field strengths used in those experiments were far weaker than the strong-field conditions achievable with current high-power lasers.
2026-08-26