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Synergetic Extreme Condition User Facility(SECUF)

  1. Home>Facilities>Material>Synergetic Extreme Condition User Facility(SECUF)>News
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  • Sharing Extreme Condition Facilities with Researchers from 11 Countries, China's Large Research Infrastructure Opens Wide and Fosters Trust with World
    Sharing Extreme Condition Facilities with Researchers from 11 Countries, China's Large Research Infrastructure Opens Wide and Fosters Trust with World
    More than 60 kilometers from the urban area of Beijing, surrounded by mountains beside the Yanqi Lake, the Synergetic Extreme Condition User Facility (SECUF) operates quietly in the Huairou Science City.
    Dong Shuo (female), an associate professor at the SECUF, and her colleague check instrument during work. Photo: Courtesy of DongEditor's Note:As global challenges grow increasingly interconnected, technological solutions are rarely confined to a single country. Through research collaboration, open sharing of expertise and partnerships with international institutions, Chinese scientists, enginee...
    Apr 27, 2026
  • China Achieves Major Breakthrough in All-superconducting Magnet
    China Achieves Major Breakthrough in All-superconducting Magnet
    China has achieved a 35.6 tesla all-superconducting magnet in an experiment facility, setting a new record, the Chinese Academy of Sciences (CAS) said on Tuesday. The all-superconducting magnet, with a central magnetic field of 35.6 tesla and a usable aperture of 35 millimeters was conducted with the Synergetic Extreme Condition User Facility. It is a user magnet designed to support domestic and international research teams in conducting cutting-edge studies.
    Researchers Li Gang, Liu Jianhua and Zhou Benzhe (L-R) pose for a group photo at the ultra-low temperature high magnetic field quantum oscillation experimental station of the Institute of Physics of the Chinese Academy of Sciences in Beijing, capital of China, on Jan. 26, 2026. (Xinhua/Jin Liwang)China has achieved a 35.6 tesla all-superconducting magnet in an experiment facility, setting a new...
    Jan 28, 2026
  • [CHINA DAILY] Beijing Opens Extreme-condition Research Facility
    [CHINA DAILY] Beijing Opens Extreme-condition Research Facility
    A key scientific facility in Beijing that can generate ultra-extreme experimental conditions is now operational,enabling scientists to conduct groundbreaking research with internationally advanced equipment, the Chinese Academy of Sciences announced Wednesday.
    Scientists work at a device related to quantum chips at the Synergetic Extreme Condition User Facility in Huairou district,Beijing,on Tuesday. [Photo by Yan Dongjie/chinadaily.com.cn]A key scientific facility in Beijing that can generate ultra-extreme experimental conditions is now operational,enabling scientists to conduct groundbreaking research with internationally advanced equipment, the C...
    Feb 26, 2025
  • [Xinhua News] China Builds Extreme
    [Xinhua News] China Builds Extreme "Super Lab" to Assist Global Scientists in Probing Mysteries of Matter
    The Synergetic Extreme Condition User Facility (SECUF), located in Beijing's suburban Huairou District, is opening a portal for scientists to observe the bizarre phenomena of matter under such extreme environments.
    BEIJING, Feb. 26 (Xinhua) -- What astonishing phenomena might materials reveal when they are subjected to conditions mimicking the extremes of the cosmos-ultra-low temperatures, magnetic fields that are hundreds of thousands of times stronger than Earth's, and pressure close to that at the planet's core?The Synergetic Extreme Condition User Facility (SECUF), located in Beijing's suburban Huairo...
    Feb 26, 2025
  • The 4th Conference on Physics under Synergetic Extreme Conditions held jointly with the Summer School of SECUF (SECUF-2025)
    The 4th Conference on Physics under Synergetic Extreme Conditions held jointly with the Summer School of SECUF (SECUF-2025)
    The 4th Conference on Physics under Synergetic Extreme Conditions held jointly with the Summer School of SECUF (SECUF-2025)
    Dear Colleagues,It is our great pleasure to announce that the 4th Conference on Physics under Synergetic Extreme Conditions and the accompanied Summer School of SECUF, together briefed as SECUF-2025, will be held in Beijing, China from July 14 to 20, 2025. We cordially invite you to participate in SECUF-2025.The SECUF series of annual conferences and summer schools was firstly launched in 2022...
    Jan 22, 2025
  • Discovery of a New Chromium-Based Kagome Superconductor-The Synergetic Extreme Condition Experimental Facility Plays a Crucial Role
    Discovery of a New Chromium-Based Kagome Superconductor-The Synergetic Extreme Condition Experimental Facility Plays a Crucial Role
    The research groups successfully overcame these challenges with the help of the unique experimental techniques of the Synergetic Extreme Condition User Facility (SECUF). They were the first to observe unconventional superconductivity near the pressure-driven magnetic quantum critical point, contributing to the discovery of the new kagome chromium-based superconductor.
    The discovery of quantum materials with kagome lattices has garnered significant attention due to their unique band structures, including flat bands, Dirac points, and van Hove singularities. Recently, vanadium-based kagome metals AV3Sb5 (A = K, Rb, Cs) have been synthesized experimentally, exhibiting rich physical phenomena such as superconductivity, chiral charge order, pairing density waves,...
    Dec 04, 2024
  • International Workshop on Quantum Materials at Extremes Successfully Held
    International Workshop on Quantum Materials at Extremes Successfully Held
    On October 15-16, 2024, the International Workshop on Quantum Materials at Extremes was successfully held at the Huairou Campus of the Institute of Physics, Chinese Academy of Sciences (CAS). This workshop was organized by the Sino-Foreign Joint Research Unit at the CAS Institute Level, namely the "Joint Research Center for Quantum Materials and Physics under Extreme Conditions," jointly undertaken by the Institute of Physics, CAS, and the Max Planck Institute for Chemical Physics of Solids (MPICPS), Germany.
    On October 15-16, 2024, the International Workshop on Quantum Materials at Extremes was successfully held at the Huairou Campus of the Institute of Physics, Chinese Academy of Sciences (CAS). This workshop was organized by the Sino-Foreign Joint Research Unit at the CAS Institute Level, namely the "Joint Research Center for Quantum Materials and Physics under Extreme Conditions," jointly undert...
    Oct 17, 2024
  • Realization of Bulk High-Temperature Superconductivity in the High-Pressure Tetragonal Phase of La2PrNi2O7 - Multiple Approaches Reveal the Adverse Effects of Microstructural Disorder on Nickel-Based High-Temperature Superconductivity
    Realization of Bulk High-Temperature Superconductivity in the High-Pressure Tetragonal Phase of La2PrNi2O7 - Multiple Approaches Reveal the Adverse Effects of Microstructural Disorder on Nickel-Based High-Temperature Superconductivity
    The research team has made significant progress in the research of nickel-based high-temperature superconductors. By partially replacing La with Pr, which has a smaller ion radius, they successfully suppressed the coexistence of other R-P phases and internal apex oxygen vacancies in La3Ni2O7, prepared polycrystalline samples of La2PrNi2O7 with significantly improved purity, and provided two crucial experimental evidences of bulk high-temperature superconductivity under high pressure in these samples: zero resistance (Tconset = 82.5K, Tczero = 60K) and complete diamagnetism (with a superconducting shielding volume fraction reaching 97%). Meanwhile, they revealed the adverse effects of microstructural disorder on high-temperature superconductivity in La3Ni2O7 using various experimental techniques.
    The Ruddlesden-Popper (R-P) series of nickel oxides, denoted as Lan+1NinO3n+1 (where n = 1, 2, 3, ..., ∞), consists of alternating stacks of n layers of LaNiO3 perovskite and LaO rock-salt layers along the c-axis. This arrangement gives rise to compounds with similar structures, such as single-layer La2NiO4 (n = 1), double-layer La3Ni2O7 (n = 2), triple-layer La4Ni3O10 (n = 3), and the infinit...
    Oct 02, 2024
  • SECUF-2024 Successfully Held
    SECUF-2024 Successfully Held
    From July 16th to 22nd, 2024, the 3rd Conference on Physics under Synergetic Extreme Conditions, held jointly with the Summer School of SECUF, was successfully organized by the Institute of Physics, Chinese Academy of Sciences, and Jilin University at the Huairou Campus of the Institute of Physics, Chinese Academy of Sciences, and the Zhongjian Yanqi Lakeview Hotel. The conference invited a total of 115 presenters from 10 countries and staff from 23 experimental stations of the facility to deliver academic reports, with a total of 140 reports, including 9 keynote reports and 23 experimental station introduction reports during the summer school, as well as 4 plenary reports and 104 sub-session reports during the academic exchange. The conference attracted over 500 researchers from both domestic and international backgrounds to attend and visit the laboratories. Both the number of reports and attendees exceeded previous years, with lively discussions, an active atmosphere, and positive feedback throughout the event.
    From July 16th to 22nd, 2024, the 3rd Conference on Physics under Synergetic Extreme Conditions, held jointly with the Summer School of SECUF, was successfully organized by the Institute of Physics, Chinese Academy of Sciences, and Jilin University at the Huairou Campus of the Institute of Physics, Chinese Academy of Sciences, and the Zhongjian Yanqi Lakeview Hotel. The conference invited a tot...
    Jul 23, 2024
  • Discovery of a New Type of Quantum Oscillation with the Reciprocal of Current as its Period
    Discovery of a New Type of Quantum Oscillation with the Reciprocal of Current as its Period
    a team led by Researchers Qu Fanming and Lu Li from the Q02/HX-Q02 Group of the Solid State Quantum Information and Computation Laboratory at the Institute of Physics/National Center for Condensed Matter Physics, Chinese Academy of Sciences, collaborated with Researcher Zhou Yi's team from the T06 Group, Researcher Shi Youguo's team from the HM-01 Group, and Professor Liu Fucai's team from the University of Electronic Science and Technology of China, to discover a new type of electrically driven quantum oscillation phenomenon in one-dimensional nanowires based on charge density waves (TaSe4)2I and TaS3. Specifically, the voltage V exhibits periodic oscillations with the reciprocal of current 1/I. Phenomenologically, this oscillation with a period of 1/I bears a striking resemblance to the magnetically driven quantum oscillations of dHvA and SdH with a period of 1/B.
    The quantum oscillation phenomena driven by magnetic fields in condensed matter physics systems are mostly very elegant, and their emergence is related to specific physical mechanisms. For example, in the Little-Parks experiment with superconducting rings, periodic oscillations of the superconducting transition temperature (Tc) with magnetic field (B) can be observed; in mesoscopic conductor ri...
    Jul 05, 2024
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