Deutsch

Scientists at Peking University invent ultra-thin optical crystals for next-generation laser technology

496
2023-12-20 19:31:08
Übersetzung anzeigen

BEIJING, Dec. 19 (Xinhua) -- A team of Chinese researchers used a novel theory to invent a new type of ultrathin optical crystal with high energy efficiency, laying the foundation for next-generation laser technology.

This photo taken on Dec. 15, 2023 shows a Twist Boron Nitride (TBN) crystal placed on a piece of fused silica in Peking University, Beijing, capital of China. A team of Chinese researchers used a novel theory to invent a new type of ultrathin optical crystal with high energy efficiency, laying the foundation for next-generation laser technology. (Xinhua/Wei Mengjia)

 

Prof. Wang Enge from the School of Physics, Peking University, recently told Xinhua that the Twist Boron Nitride (TBN) made by the team, with a micron-level thickness, is the thinnest optical crystal currently known in the world. Compared with traditional crystals of the same thickness, its energy efficiency is raised by 100 to 10,000 times.

Wang, also an academician of the Chinese Academy of Sciences, said this achievement is an original innovation by China in the theory of optical crystals, and has created a new field of making optical crystals with two-dimensional thin-film materials of light elements.

The research findings were recently published in the journal Physical Review Letters.

Laser is one of the underlying technologies of the information society. Optical crystals can realize the functions of frequency conversion, parametric amplification and signal modulation, to name a few, and are the key parts of laser devices.

In the past 60 years, the research and development of optical crystals has been mainly guided by two phase-matching theories proposed by scientists in the United States.

However, due to the limitations of traditional theory models and material systems, the existing crystals have struggled to meet the future requirements for developing laser devices, such as miniaturization, high integration and functionalization. The development of new-generation laser technology needs breakthroughs in optical crystal theory and materials.

Wang Enge and Prof. Liu Kaihui, director of the Institute of Condensed Matter and Material Physics, School of Physics, Peking University, led the team to develop the twist-phase-matching theory, the third phase-matching theory based on the light-element material system.

"The laser generated by optical crystals can be viewed as a marching column of individuals. The twist mechanism can make everyone's direction and pace highly coordinated, greatly improving the energy conversion efficiency of the laser," explained Liu, who is also deputy director of the Interdisciplinary Institute of Light-Element Quantum Materials at the Beijing Huairou National Comprehensive Science Center.

The research has opened up a brand-new design model and material system, and realized the original innovation of the whole chain from basic optics theory to material science and technology, he said.

"The TBN crystal's thickness ranges from 1 to 10 microns. The thickness of optical crystals we had known before is mostly at the level of a millimeter or even centimeter," Liu added.

The TBN production technology is now applying for patents in the United States, Britain, Japan and other countries. The team has made a TBN laser prototype and is developing new-generation laser technology with enterprises.

"Optical crystal is the cornerstone of laser technology development, and the future of laser technology is determined by the design theory and production technology of optical crystals," Wang said.

With ultra-thin size, excellent integration potential and new functions, the TBN crystal is expected to achieve new application breakthroughs in quantum light sources, photonic chips, artificial intelligence and other fields in the future, according to Wang.

Liu Kaihui (front), director of the Institute of Condensed Matter and Material Physics, School of Physics, Peking University, and other members of a research team pose for a group photo in Peking University, Beijing, capital of China, Dec. 15, 2023. A team of Chinese researchers used a novel theory to invent a new type of ultrathin optical crystal with high energy efficiency, laying the foundation for next-generation laser technology. (Xinhua/Wei Mengjia)

Ähnliche Empfehlungen
  • IPG launches dual beam fiber laser for additive manufacturing applications

    Recently, American fiber laser giant IPG Photonics announced the launch of a new laser series specifically designed for the additive manufacturing field.The highlight of this series of lasers lies in its integration of IPG's unique dual beam technology, which can independently regulate and simultaneously emit core and ring beams, setting a new benchmark in accuracy, efficiency, and reliability.Ba...

    2024-11-25
    Übersetzung anzeigen
  • Scientists demonstrate effective fusion "spark plugs" in groundbreaking experiments

    Researchers from the Laser Energy Laboratory at the University of Rochester led the experiment and demonstrated an efficient "spark plug" for direct driving of inertial confinement fusion. In two studies published in the journal Nature Physics, the team shared their findings and detailed the potential to expand these methods with the aim of successful nuclear fusion in future facilities.LLE is the...

    2024-03-04
    Übersetzung anzeigen
  • Demonstrating broadband thermal imaging using superoptical technology in a new framework

    The research team used a new reverse design framework to demonstrate ultra optical broadband thermal imaging for applications ranging from consumer electronics to thermal sensing and night vision.The new framework, known as the "Modulation Transfer Function" project, solves the challenges related to broadband metaoptics by determining the functional relationship between image contrast and spatial ...

    2024-03-19
    Übersetzung anzeigen
  • Sales and order volume of Deutsche Bahn Group have decreased

    Recently, TRUMPF, a leading global provider of machine tools and laser technology solutions, released preliminary data for the 2023/24 fiscal year: compared to the previous fiscal year, sales decreased by about 4% year-on-year to 5.2 billion euros; The order amount decreased by 10% to 4.6 billion euros. The Tongkuai Group ended its 2023/24 fiscal year on June 30, 2024, with a decrease in both s...

    2024-07-22
    Übersetzung anzeigen
  • Enhanced laser heterodyne spectroscopy contributes to the measurement of atmospheric greenhouse gases

    The research team led by Professor Gao Xiaoming of the Chinese Academy of Sciences Hefei Institute of Physical Sciences has improved the measurement accuracy of atmospheric greenhouse gases by using erbium-doped fiber amplifier assisted laser heterodyne radiometer.The study was published in the Journal of Optics and was selected as an editor's selection.LHR is renowned for its high sensitivity and...

    2023-10-25
    Übersetzung anzeigen