Deutsch

Focused Energy purchases two world-class high-energy lasers

271
2024-12-25 14:45:23
Übersetzung anzeigen

Recently, Focused Energy, a well-known foreign fusion energy startup, announced that it has officially signed an agreement to purchase two of the world's top high-energy lasers. These two large lasers will be deployed in the company's upcoming factory in the San Francisco Bay Area in the next two years.

Scott Mercer, CEO of Focused Energy, stated, "These lasers are currently the highest average power devices in the private sector, each capable of releasing over 1 kilojoule of energy towards targets, with a total investment of nearly $40 million.

The most advanced inertial restraint system currently available is located at the National Ignition Facility of the US government, which announced a breakthrough in "net gain" two years ago. There, physicists can conduct approximately 300 "shots" each year to study nuclear fusion. This is far below the demand of commercial nuclear fusion power plants. For example, the goal of 'concentrating energy' is to shoot 10 times per second.

The two new lasers from Focused Energy will be able to emit once per minute, although this is partly due to the active development of devices supporting them.

Doug Hammond, Vice President of the Laser Engineering Department of the company, further explained, "These subsystems are important demonstrations of the technology we need to build the final fusion pilot factory." He emphasized that the high-energy main amplifier is still under parallel development because such products do not yet exist in the market.

These lasers are not only a key part of the technology demonstration, but also fully customized and manufactured by Amplitude Lasers, a well-known ultrafast laser company in France. Each laser system covers an area of approximately 1600 square feet, equivalent to the size of a small residential building. Damien Buet, CEO of Amplitude Lasers, explained, "One of the reasons we haven't mass-produced such a large laser is that there isn't a significant demand in the market at the moment.

However, if Focused Energy can achieve its milestone goals, this situation may change. The commercial power plants designed by the company each require thousands of lasers. Buet pointed out, "The number of diodes required for a factory will far exceed the current global maximum production capacity. We need to expand the entire supply chain.

In order to ensure sufficient ignition energy and operational reliability of the power plant (even when some lasers require maintenance or replacement), the main challenge faced by Focused Energy is construction speed. Scott Mercer said, "Our target is 2035. The key is how quickly we can start mass producing lasers.

He added, "Even connecting a traditional power plant to the grid within 10 years is a highly challenging goal today
The kilojoule level laser of Amplitude Lasers is designed to test the physical properties required for effective direct drive compression of deuterium tritium fusion fuel targets. They will run at a high repetition rate of once every 60 seconds, enabling rapid design iterations.
This research was supported and funded by the German Federal Breakthrough Innovation Agency (SPRIND).

This three-year development plan will begin at the Amplitude Lasers Lisses facility near Paris in early 2025, building on the global momentum of inertial fusion energy triggered by the National Ignition Facility (NIF) fusion ignition breakthrough in December 2022. This initiative places the amplitude at the forefront of global development of clean energy solutions, utilizing cutting-edge laser technology to improve the parameters of inertial confinement fusion and advance the commitment to sustainable energy production.

We are seeking a nuclear fusion method called inertial confinement, in which several laser beams converge to compress fuel particles, causing their internal matter to fuse and release energy. This technology has demonstrated for the first time that net positive nuclear fusion power generation is possible, although there are still significant obstacles to overcome.

Source: OFweek

Ähnliche Empfehlungen
  • Experimental verification of driving pressure enhancement and smoothing for hybrid driven inertial confinement fusion on a 100 kJ laser device

    The research teams from the Laser Fusion Research Center of the Chinese Academy of Engineering Physics, the Beijing Institute of Applied Physics and Computational Mathematics, Peking University, and Shenzhen University of Technology reported experimental verification of the driving pressure enhancement and smoothing of hybrid driven inertial confinement fusion on a 100 kJ laser equipment.The relev...

    2023-09-25
    Übersetzung anzeigen
  • BluGlass successfully raised $5.87 million to accelerate GaN laser production and delivery

    Recently, BluGlass, a leading global semiconductor development company, successfully completed its stock purchase plan (SPP) and raised $5.87 million in funds (excluding costs). This SPP provides eligible shareholders with the opportunity to subscribe to up to $100000 in new shares of BluGlass at a discounted price of $0.037 per share, along with free additional options. This initiative has gained...

    2024-04-12
    Übersetzung anzeigen
  • Snapmaker Announces Its First Dedicated Laser Cutter, the Ray, in 20w and 40w Flavors

    Snapmaker has been making three-in-one manufacturing tools -- The Snapmaker, Snapmaker 2 and Artisan -- for over six years now. These machines have changeable tool heads that can be used for 3D printing, laser cutting and CNC machining. At the beginning of this year, it branched out to make adedicated 3D printer, the J1-- a dual print-head machine that works very well -- and today the ...

    2023-08-28
    Übersetzung anzeigen
  • Reshaping the Sky: Laser Scanning Drones Innovate Data Collection

    Imagine soaring above the Earth, the world unfolds in patterns and reliefs, and the terrain whispers its secrets in the wind. Now imagine capturing these whispers and translating them into a digital language to draw our world map with unprecedented accuracy. Welcome to the forefront of laser scanning drones, a technological ballet in the sky where the fusion of flight and laser precision is reshap...

    2024-04-07
    Übersetzung anzeigen
  • Researchers Obtaining Scientific Returns from Raman Spectroscopy for External Bioexploration Using Lasers

    We investigated the potential of laser selection in a wide optical range from ultraviolet to visible light, and then to infrared (excitation wavelengths of 325, 532, 785, and 1064 nm), in order to combine and analyze extreme microorganisms related to Earth (such as Cryptomeria elegans, cold floating nematodes, and circular green algae), carbon water compound molecules, as well as simulated mineral...

    2023-10-23
    Übersetzung anzeigen