Ελληνικά

French laser giant's profits decline, laser radar business restructuring

456
2024-10-09 13:54:03
Δείτε τη μετάφραση

Recently, Marvel Fusion, a pioneer in the field of laser fusion, successfully raised 62.8 million euros (approximately 70.3 million US dollars) in funding. This funding will provide strong impetus for its fusion technology demonstration on existing laser equipment and accelerate the comprehensive technology validation process at its facility in Colorado, with the goal of achieving this milestone by 2027.

 



This financing is led by HV Capital and has received support from several well-known investment institutions, including b2venture, Bayern Kapital, Deutsche Telekom, Earlybird, SPRIND, and Tengelmann Ventures. Of particular note is that Marvel Fusion has also been favored by the European Innovation Council, with a grant of 2.5 million euros and the prospect of receiving an additional equity investment of up to 15 million euros (pending approval), undoubtedly adding a significant amount to the company's financing journey.

In addition, Marvel Fusion is honored to have been selected for the accelerator program jointly launched by the European Innovation Council and the Small and Medium Enterprise Executive Agency, which aims to support the expansion of its fuel target production scale through a grant of 2.5 million euros and may introduce up to 15 million euros in equity investment as further assistance.

As one of the explorers in the field of inertial confinement fusion, Marvel Fusion's approach aligns with the advanced technology path of the US Department of Energy's National Ignition Facility (NIF), which has validated the net energy gain of laser nuclear fusion in 2022, setting an important milestone for the entire industry. However, Marvel Fusion, with its cutting-edge laser technology, is committed to improving the power and efficiency of lasers, surpassing the limitations of NIF based on old designs.

The company is partnering with Colorado State University to rapidly build a demonstration plant, with the core goal of validating its fusion technology competitiveness through two 100 joule laser systems. These lasers will accurately bombard nanostructured targets at ultra-high speeds (one billionth of a second per second), releasing high-energy positive ions through photon stripping, and triggering fusion reactions.

The hybrid fuel strategy chosen by Marvel Fusion (mainly composed of hydrogen and boron) demonstrates its flexibility and foresight in fuel selection. Moritz von der Linden emphasized that this strategy facilitates adjusting fuel combinations according to future technological developments.

Compared to the complex fuel particle preparation process of NIF (which requires gold lining wrapping and takes two weeks), Marvel Fusion's fuel and target design are more suitable for large-scale production. Its fuel remains solid at room temperature, easy to handle, and the target structure uses silicon material, greatly simplifying the production process and cost.

Even more exciting is that Marvel Fusion is able to efficiently produce nanoscale targets on standard 300mm wafers using mature semiconductor lithography technology, with each wafer capable of producing approximately 5000 targets and sizes controlled between 50 and 80 nanometers. This innovation not only reduces production costs, but also accelerates the pace of technology towards commercialization.

Looking ahead, the first prototype of Marvel Fusion is expected to be released between 2032 and 2033. The prototype will integrate hundreds of kilojoule level lasers, each capable of emitting about 10 times per second, marking another major breakthrough for the company in the field of laser fusion.

Source: OFweek

Σχετικές προτάσεις
  • Laser photonics helps simplify maintenance processes in the mining industry

    Laser Photonics Corporation (LPC) is a leading global developer of industrial laser systems for cleaning and other material processing applications, emphasizing the critical applications of its industrial laser cleaning systems in the mining industry.Laser Photonics provides a user-friendly, ethical, cost-effective, and time-saving solution for professionals in the mining industry to maintain heav...

    2024-06-14
    Δείτε τη μετάφραση
  • Femtosecond laser-induced plasticity of copper oxide nanowires

    It is reported that researchers from the University of Waterloo in Canada have reported a study on the plasticity of copper oxide nanowires induced by femtosecond laser. The related research was published in Applied Surface Science under the title "Femtosecond laser induced plasticity in CuO nanowires".Metal oxide nanowires are ideal materials for manufacturing nanodevices, especially strain senso...

    2024-07-15
    Δείτε τη μετάφραση
  • Researchers from Columbia University in New York reported the latest research on reverse laser sintering of metal powders

    Researchers from Columbia University in New York reported the latest research on reverse laser sintering of metal powders. The related achievements were published in Scientific Reports under the title "Invested laser sintering of metal powder".The researchers demonstrated the ability of reverse laser sintering technology to manufacture metal powder parts. Researchers first deposit a layer of coppe...

    2024-01-29
    Δείτε τη μετάφραση
  • China University of Science and Technology has made progress in in-situ monitoring of thermal runaway in lithium-ion batteries with optical fibers

    Recently, the team of Professor Sun Jinhua and researcher Wang Qingsong of the University of Science and Technology of China and the team of Professor Guo Tuan of Jinan University have made important achievements in the field of early warning of thermal runaway optical fiber detection of lithium-ion batteries.A high-precision, multi-mode integrated fiber optic device that can be implanted in...

    2023-09-04
    Δείτε τη μετάφραση
  • New photon avalanche nanoparticles may usher in the next generation of optical computers

    A research team led by Lawrence Berkeley National Laboratory (Berkeley Lab), Columbia University, and Autonomous University of Madrid has successfully developed a novel optical computing material using photon avalanche nanoparticles. This breakthrough achievement was recently published in the journal Nature Photonics, paving the way for the manufacture of optical memory and transistors at the nano...

    02-28
    Δείτε τη μετάφραση