简体中文

Investing nearly £ 520 million, this synchrotron light source in the UK will be upgraded

409
2023-09-27 13:56:59
查看翻译

Recently, the UK's national synchrotron "Diamond Light Source" announced an investment of nearly £ 520 million ($648.3 million) to implement three new flagship beam lines and upgrade existing beam lines. This comprehensive upgrade will be delivered by 2030.

The Department for Science, Innovation, and Technology and the biomedical charity Wellcome jointly approved the facility upgrade project, with 86% of the £ 520 million funding from the UK government and 14% from the Wellcome Foundation.

The "Diamond Light Source" accelerator located in Oxford, UK is essentially a huge microscope that can generate light 10 billion times brighter than the sun. This light is directed to a laboratory called a beam line, where a series of scientific research fields are conducted.

Its power is 10000 times that of traditional microscopes. In addition to groundbreaking medical discoveries, it is crucial for studying a range of themes, including ancient paintings and fragments of fossils, while finding solutions to extend the lifespan of machinery such as engines and turbine blades.

The new fourth generation synchrotron will support a growing user base of researchers while maintaining the UK's world leading position in cutting-edge science.

The Diamond II upgrade, which lasts for several years, is part of the complete Diamond light source upgrade plan and will include an 18 month "dark period" where all beams will be inactive, followed by a period of time when new facilities will be fully launched, including three new flagship beam lines and many major upgrades to other beam lines. In addition to the "Diamond ii" program, it will also cover new devices that replace synchronous accelerator machines, enabling them to generate brighter light, as well as new computing hardware and software.

The advancement of accelerator technology means that Diamond II will provide opportunities for the scientific community in academia and industry to develop brighter beams and increased coherence within the large energy range of all our beam lines and additional beam lines, "said Adrian Smith, Chairman of the Diamond Light Source Board of Directors and Chairman of the Royal Society. In addition, Diamond Light Source's funding announcement states that the upgrade is expected to pave the way for material research and accelerated drug development, as well as provide real-time insights into advanced manufacturing and next-generation battery performance processes.

Source: OFweek

相关推荐
  • Researchers enhance the signal of perovskite nanosheets

    In the field of optoelectronics, researchers from Busan National University in South Korea and the University of Oxford in the UK have successfully improved the signal amplification ability of CsPbBr3 perovskite nanosheets through innovative patterned waveguide methods, bringing new possibilities for the future of optoelectronics. This breakthrough not only has potential applications in fields suc...

    2024-02-22
    查看翻译
  • Chip guided beam for new portable 3D printers

    Imagine being able to carry a 3D printer with you and quickly create low-cost objects, such as fastening bicycle wheels or parts needed for critical medical surgeries. Scientists from the Massachusetts Institute of Technology (MIT) and the University of Texas at Austin have combined silicon photonics and photochemical technology to successfully develop the first chip based 3D printer, taking a cru...

    2024-06-18
    查看翻译
  • Laser communication is expected to completely change optical links

    Laser technology is becoming a game changer in the field of satellite communication (SATCOM), capable of creating ultra secure networks that can transmit large amounts of data at unprecedented speeds through satellite networks and constellations.With continuous progress, the industry is ready for growth and collaboration, seizing the untapped potential of disconnected populations. The ability to h...

    2023-09-20
    查看翻译
  • Fujitsu collaborates to research and develop multi band wavelength fiber optic transmission technology

    Recently, Fujitsu and KDDI research company have successfully developed a high-capacity multi band wavelength multiplexing transmission technology using installed optical fibers.The new technology of the two companies can transmit wavelengths beyond the C-band by using batch wavelength conversion and multi band amplification technology.Expanding transmission capacity in remote areasTwo companies h...

    2023-12-05
    查看翻译
  • Vigo University School of Technology invents laser glass recycling system

    LaserON, a laser industrial application group at the University of Vigo, is leading a European project that aims to revolutionize the glass recycling process by developing a new technology called glass laser conversion, so that everyone can recycle at home. This group is led by Professor Juan Pou and Professor Rafael Comesa ñ a, and is part of Cintecx, leading EverGlass. Its partners come f...

    2024-01-19
    查看翻译