English

Construction of Advanced New Laser Research Centers in American Universities

230
2024-10-30 11:51:58
See translation

The ATLAS R&D center is expected to be completed by mid-2026!
A powerful new laser research facility located on the Foothills campus of Colorado State University will begin construction this month. The facility is planned to be put into use in mid-2026 and is the result of 40 years of laser development research at Colorado State University. It is a collaboration with the Fusion Energy Science Program of the US Department of Energy's Office of Science and has established a $150 million strategic public-private partnership with Marvel Fusion, which will be launched in 2023.

This new building will be called the Advanced Technology Laser Applications and Science (ATLAS) facility. One of the main research focuses of this facility is laser driven fusion as a viable clean energy source.

After completion, the facility will be equipped with an upgraded version of the existing ultra-high power laser developed by CSU, as well as two new lasers provided by Marvel. The ATLAS facility will consist of a set of high-intensity, high repetition rate lasers that can be configured to simultaneously emit towards a single fusion target. The explosion will provide nearly 7 watts of power to a focal point with a diameter of approximately 100 μ m. These three ultra-high power lasers can also be used alone or in other combinations to study issues beyond fusion energy.

In addition to nuclear fusion and basic scientific research, the ATLAS facility will also support interdisciplinary research such as medicine. Among them, laser can be used to deposit energy in very localized areas to treat tumors. Other potential research for this facility includes microchip lithography and design, as well as detailed X-ray imaging of rapidly moving objects. The existing and new facilities will be combined and collectively referred to as the Advanced Extreme Photonics Laser (ALEPH) Center.

In addition, the LaserNetUS project has awarded $12.5 million to the university and a $16 million prize to launch the Inertial Fusion Science and Technology Center. These grants support research using existing campus facilities, including upgrading high-power ALEPH lasers.

The leading position of CSU in the field of laser research is mainly attributed to the work of outstanding professors Jorge Rocca and Carmen Menoni at the university. They are all members of the Department of Electrical and Computer Engineering, with Rocca still working in the Department of Physics and Menoni working in the Department of Chemistry. For many years, the two have been leading interdisciplinary research on this topic at university.

Source: OFweek

Related Recommendations
  • Developing miniaturized laser technology: This company has secured $5 million in financing

    Recently, high-performance laser supplier Skylark Lasers announced that it has raised $5 million in investment to further advance its efforts in miniaturized laser technology.Skylark Lasers is established at the center of the Scottish Photonics Cluster, focusing on the design and production of compact diode pumped solid-state (C-DPSS) lasers with the purest spectral characteristics, providing high...

    2023-11-02
    See translation
  • Hymson acquires Leister Laser's plastic welding business, further advancing its globalization strategy

    On February 27th, Hymson and Leister Group successfully signed a strategic acquisition agreement, announcing the wholly-owned acquisition of the laser plastic welding business of Leister Group.On the same day, the two parties held a grand signing ceremony in Switzerland, which was attended by Mr. Zhao Shengyu, Chairman and General Manager of Hymson, Mr. Chen Jiewei, Director and CEO of Hymson, Mr....

    03-11
    See translation
  • Scientists demonstrate a new optical neural network training method that can crush electronic microprocessors

    The current deep neural network system (such as ChatGPT) can quickly improve energy efficiency by 100 times in training, and "future improvements will greatly increase by several orders of magnitude. Scientists from MIT and other institutions have demonstrated a new optical neural network training method that can crush state-of-the-art electronic microprocessors.Moreover, the computational density...

    2023-09-27
    See translation
  • Researchers have captured the strange behavior of laser induced gold

    A new study conducted by the US Department of Energy's SLAC National Accelerator Laboratory has revealed the strange behavior of gold when impacted by high-energy laser pulses.When certain materials are subjected to strong laser excitation, they will quickly disintegrate. But gold is exactly the opposite: it becomes more resilient and resilient. This is because the way gold atoms vibrate together ...

    2024-02-17
    See translation
  • JMP: Small hole mode swing laser welding of nickel based high-temperature alloys - simulation, experiment, and process diagram

    IntroductionThe small hole mode swing laser welding has gained increasing recognition due to its ability to bridge gaps, refine microstructures, and enhance the mechanical properties of welds. However, the effects of amplitude, frequency, welding speed, laser beam power, and beam radius on heat flux distribution, melting mode, and three-dimensional temperature field have not been well understood. ...

    04-11
    See translation