Español

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

714
2023-09-27 13:56:59
Ver traducción

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

Recomendaciones relacionadas
  • High sensitivity visualization of ultrafast carrier diffusion using a wide field holographic microscope

    A sketch of the imaging and holographic parts of a transient holographic microscope, including a pulse sequence, to illustrate the signal modulation method. By imaging the pinhole array at the sample position, a diffraction limited excitation spot array can be created, allowing for the simultaneous collection of transient data around 100 excitation spots.Femtosecond transient microscopy is an impo...

    2023-12-25
    Ver traducción
  • WEC acquires precision laser cutting giant Laser Profiles Ltd

    Recently, WEC Group, a leading engineering and manufacturing company in the UK, announced that it has completed the acquisition of Laser Profiles Ltd, a precision laser cutting leader in Bournemouth. For over 40 years, WEC Group has been providing manufacturing, laser cutting, precision machining, waterjet cutting, powder coating, and CCTV installation solutions.The company stated that the acqui...

    2024-08-19
    Ver traducción
  • Aerotech launches new micro hexapod sports platform

    Recently, Aerotech Inc., a global leader in precision motion control and automation, launched the HexGen HEX150-125HL miniature hexapod motion platform, a six degree of freedom (DOF) precision positioning system. This compact and cost-effective hexapod sports platform has a base diameter of 150 millimeters and a nominal height of 125 millimeters. It can achieve a minimum incremental movement of up...

    01-14
    Ver traducción
  • The team led by Gao Chunqing and Fu Shiyao from Beijing University of Technology has made significant breakthroughs in the study of photon angular momentum regulation

    Recently, a team led by Gao Chunqing and Fu Shiyao from the School of Optoelectronics at Beijing University of Technology combined optical spatial coordinate transformation with photon spin Hall effect to construct a photon angular momentum filter for the first time internationally, achieving on-demand regulation of photon spin angular momentum and orbital angular momentum.The related achievements...

    2023-10-20
    Ver traducción
  • Low noise! Switzerland develops a new type of laser

    According to foreign media reports, scientists from the Physics Research Institute and the Institute of Physics and the Center for Quantum Science and Engineering at the Swiss Federal Institute of Technology Lausanne (EPFL) in Lausanne, Switzerland have made a new progress in the field of excitation science, developing a smaller and quieter laser system than previous products.Small laser system (I...

    2024-07-03
    Ver traducción