简体中文

Laser fusion breakthrough brings greater energy explosion

113
2023-09-26 15:28:37
查看翻译

Recently, scientists from the National Ignition Facility at Lawrence Livermore National Laboratory in California produced a burst of energy by bombarding hydrogen pellets with 192 laser beams, briefly reproducing the fusion process that powers the sun. This is a repeat of an experiment in December last year, but this time the scientists generated more energy, with a gain almost double that of the incident laser.

We will repeat the ignition again, "Richard Towne, deputy director of the Livermore laser fusion project, said in an interview. On Monday, he gave a speech at a conference in Denver on the July experiment.

Livermore's research results have raised hopes that one day, nuclear fusion can be used to generate a large amount of electricity without producing greenhouse gases or long-lived radioactive waste.

The experiment in December last year generated approximately 3 megajoules of energy, equivalent to approximately 1.5 pounds of TNT, or 1.5 times the energy of the incident laser, earning a whirlwind of praise. This is the first time a fusion reaction has occurred in a laboratory environment where the energy generated exceeds the energy required to initiate the reaction. The experiment in July is basically the same as the experiment in December. We expect a similar output, "Dr. Tang said. Approximately three megajoules. The actual output is 3.88 megajoules. Better than predicted results indicate that laser fusion can become more efficient with some adjustments. But small changes can also lead to fusion failure.

Dr. Town said that the fusion experiment conducted in June a month ago was also expected to generate about 3 megajoules of heat, but in reality only 1.6 to 1.7 megajoules of heat were generated. The most recent attempt this month, as part of efforts to maintain nuclear weapons without conducting underground nuclear tests, generated slightly more than two megajoules of energy, in balance with laser energy balance. It's a bit surprising that we didn't ignite all of these substances, "Dr. Tang said.

By analyzing the results, Livermore scientists now believe they have a better understanding of what is happening. Firstly, 192 lasers are not perfect. Every time a laser is emitted, there are some changes, "Dr. Tang said. The laser energy did not reach a perfect balance to compress the hydrogen fuel capsule, but a slight imbalance would push the capsule in one direction. Some energy has been lost, and an inward implosion will not heat the hydrogen too much. There are also subtle changes in the fuel tanks that affect fusion reactions. Computer simulations now indicate that the range of output energy may be large. It may drop to 1.4 megajoules, "Dr. Town said. If the stars are aligned and everything is normal, it may reach seven megajoules.

Siegfried Glenzer, a scientist at the SLAC National Accelerator Laboratory in Menlo Park, California, led preliminary fusion experiments at the Livermore facility a few years ago, In fact, the gain of the last launch has increased, which is encouraging news, indicating that the current implosion has not been fully optimized. "He said of the progress in July. The national ignition device is about to begin a series of new experiments, with the aim of producing higher fusion production more consistently. The energy of the laser in this facility has been upgraded from 2.05 megajoules to 2.2 megajoules. The latest progress occurred after the last upgrade from 1.9 megajoules. The additional energy is expected to bring about further improvements. If you can effectively couple more energy to hotspots, you should achieve more production, "Dr. Tang said. You can do this with a larger hammer.

Source: Laser Network





相关推荐
  • Researchers use blurry light to 3D print high-quality optical components

    Canadian researchers have developed a new 3D printing method called Blur Tomography, which can quickly produce micro lenses with commercial grade optical quality. The new method can make designing and manufacturing various optical devices easier and faster.Daniel Webber from the National Research Council of Canada stated, "We have intentionally added optical blurring to the beams used in this 3D p...

    2024-05-11
    查看翻译
  • The Boston University research team developed a high-throughput single-cell sorting technique based on stimulated Raman spectroscopy

    A Boston University research project has successfully developed an innovative single-cell sorting technique that uses stimulated Raman spectroscopy to replace traditional fluorescent labeling and achieve labeling free and non-destructive single-cell measurements. This technology is expected to have a profound impact in the fields of cytology, microbiology and biomedical research, allowing scienti...

    2023-09-07
    查看翻译
  • Researchers have developed a new type of frequency comb that is expected to further improve the accuracy of timing

    The chip based device, known as the frequency comb, measures the frequency of light waves with unparalleled accuracy, completely changing timing, detection of exoplanets, and high-speed optical communication.Now, scientists and collaborators from the National Institute of Standards and Technology in the United States have developed a new method for manufacturing combs, which is expected to improve...

    2024-03-15
    查看翻译
  • Successful First Satellite Earth Laser High Speed Image Transmission Experiment

    Recently, the reporter learned from Changguang Satellite Technology Co., Ltd. (hereinafter referred to as "Changguang Satellite") that the company used a self-developed vehicle mounted laser communication ground station to conduct satellite ground laser high-speed image transmission experiments with the onboard laser communication terminal of the "Jilin No.1" constellation MF02A04 satellite and ac...

    2023-10-14
    查看翻译
  • The global laser technology market is expected to reach 29.5 billion US dollars by 2029

    Recently, Markets And Markets released a five-year assessment report on the global laser industry. According to the report, the global laser technology market is expected to reach $20 billion by 2024 and is projected to reach $29.5 billion by 2029, with a compound annual growth rate of 8.0% during the forecast period.Global Laser Technology Market ForecastThe reasons for market growth include: the...

    2024-07-25
    查看翻译