日本語

An innovative technology that can make light "bend"

266
2024-11-11 13:51:46
翻訳を見る

A research team from the University of Glasgow in the UK drew inspiration from the phenomenon of clouds scattering sunlight and developed an innovative technology that can effectively guide or even "bend" light. This technology is expected to achieve significant breakthroughs in fields such as medical imaging, cooling systems, and even nuclear reactors. The relevant research results were published in the latest issue of the journal Nature Physics under the title "Energy Transport in Diffuse Waveguides".

The research team pointed out that clouds, snow, and other white materials have similar effects on light: when photons shine on the surface of these objects, they are almost unable to penetrate and scatter in all directions. For example, when sunlight shines on cumulonimbus clouds, the light will reflect from the top of the cloud, making this part of the cloud appear bright and white; However, there is very little light reaching the bottom of the cloud, resulting in a dark color at the bottom of the cloud.

In order to simulate this natural phenomenon, the research team used opaque white materials and 3D printing technology to manufacture a new type of material, and constructed some small tunnels inside the material. When light shines on this material, it enters these tunnels and scatters. However, unlike scattering in nature, photons do not randomly scatter in all directions, but are guided back into the tunnel by opaque materials. Through this method, they successfully created a series of materials that can guide light in an orderly manner.

Compared with traditional solid materials, this new material increases the transmittance of light by more than two orders of magnitude and enables light to propagate in curved paths. Although this material cannot achieve long-distance transmission like optical fibers, its method is simple and cost-effective, with significant advantages.

The research team emphasizes that this technique of bending light can utilize existing semi transparent structures, such as tendons and fluids within the spine, to open up new avenues for medical imaging. The new technology can also be used to guide heat and neutrons, suitable for multiple engineering fields such as cooling systems and nuclear reactors.

Source: Yangtze River Delta Laser Alliance

関連のおすすめ
  • 3D printed chocolate: a delicious fusion of innovation and sustainable development

    In the era of sustainable development and cutting-edge technology, the integration of 3D printing and culinary art is not only an innovation, but also a proof of human creativity. Imagine in such a world, your desserts are not just coming out of the kitchen, but carefully designed and printed layer by layer. This is not a glimpse of the distant future, but the reality of today, as developers have ...

    2024-02-19
    翻訳を見る
  • Coherent's revenue for 2024 is $5.301 billion

    International laser giant Coherent's Q4 2024 sales exceeded expectations, reaching a historic high!Recently, Coherent released its highest quarterly sales data in history, mainly due to the demand for optical transceivers in artificial intelligence data center applications. For the three months ending December 31, the company's revenue was $1.43 billion, a year-on-year increase of 27% and a 6% inc...

    02-10
    翻訳を見る
  • Researchers have made breakthrough discoveries in the field of nanophotonics

    Researchers have made breakthrough discoveries in the field of nanophotonics. They have successfully developed a locked mode ultrafast laser using lithium niobium, a material known for its excellent optical properties. This breakthrough opens up new possibilities for revolutionary applications, including telecommunications, data storage, and ultra fast imaging.A mode-locked laser is a type of lase...

    2023-11-20
    翻訳を見る
  • BLM Group launches a new LT12 laser tube cutting system

    Recently, BLM Group in the United States has launched a new LT12 laser tube system, which performs well in cutting light and heavy pipes and profiles, and can handle materials with a diameter of up to 305 millimeters.According to the company, compared to other similar machines, the LT12 laser tube system reduces cutting time by up to 55% when cutting materials with the same maximum diameter, signi...

    2024-04-18
    翻訳を見る
  • NSF funding for the world leading EP-OPAL laser multi mechanism design in Rochester

    The National Science Foundation (NSF) of the United States has awarded the University of Rochester nearly $18 million for three years to design and prototype key technologies for EP-OPAL, a new facility dedicated to studying the interaction between ultra-high intensity lasers and matter.After the design project is completed, the facility can be built at the Laser Energy Laboratory (LLE). This fund...

    2023-09-26
    翻訳を見る