Ελληνικά

The new method can maintain beam quality while significantly improving the power of fiber lasers

506
2023-12-22 14:25:39
Δείτε τη μετάφραση

The new discovery by optical scientists has brought new vitality to fiber lasers. This innovative method significantly improves the power of lasers without reducing beam quality, and will become an important defense technology for future low-cost drones and remote sensing.

The research teams from the University of South Australia, the University of Adelaide, and Yale University have demonstrated new applications of multimode fibers, successfully increasing the power of fiber lasers by 3 to 9 times while maintaining beam quality, enabling them to focus on targets from a long distance.

This important research achievement was published in the journal Nature Communications, and the breakthrough stimulated Brillouin scattering (SBS) suppression and output focusing schematic diagram showcases its technical principles.

This innovative technology excites multiple modes in multimode fibers, significantly increasing the SBS threshold power. The core lies in generating diffraction limited light spots near the fiber output by modulating the relative phase of the fiber mode, and producing a focusing effect through lens collimation.

Researchers say that this new method will bring extremely high power output to fiber lasers, which will be widely used in fields such as defense industry, remote sensing applications, and gravitational wave detection, bringing unprecedented benefits for future development.

In response to the popularity of low-cost drones in modern battlefields, high-power fiber lasers are particularly important. It has the advantages of extremely low single launch cost and light speed operation, which can resist large-scale drone attacks, maintain the launch capability of military assets and vehicles, and ensure the execution of critical combat tasks.

This advanced technology not only has potential deterrent effects in the field of defense, but also aligns with the goals of defense strategic assessment and AUKUS Pillar 2.

Dr. Ori Henderson Sapir, a researcher at the Institute of Photonics and Advanced Sensing at the National University of Australia, stated that Australia has a long history of innovative fiber optic technology, which will put it in a world leading position in developing the next generation of high-power fiber lasers, not only limited to the defense field, but also contributing to new scientific discoveries.

Source: Laser Net

Σχετικές προτάσεις
  • Scientists achieve extremely short laser pulses with a peak power of 6 terawatts

    RIKEN's two physicists have achieved extremely short laser pulses with a peak power of 6 terawatts (6 trillion watts) - roughly equivalent to the power generated by 6000 nuclear power plants. This achievement will contribute to the further development of attosecond lasers, for which three researchers were awarded the Nobel Prize in Physics in 2023. This study was published in the journal Nature Ph...

    2024-04-22
    Δείτε τη μετάφραση
  • Micro devices output powerful lasers at room temperature, reducing power consumption by 7 times

    Recently, researchers at the Rensselaer Polytechnic Institute in the United States have invented a miniature device thinner than human hair, which can help scientists explore the essence of light and matter and unravel the mysteries of the quantum field. The most important advantage of this technology is that it can work at room temperature without the need for complex infrastructure. The resea...

    2024-05-29
    Δείτε τη μετάφραση
  • An efficient femtosecond pulse amplification technique for extracting the maximum stored energy in fiber laser amplifiers

    The well-known journal Optica published a paper in November 2024 titled "Near complete extraction of maximum stored energy from large core fibers using coherent pulse stacking amplification of femtosecond pulses"The authors of the paper were the University of Michigan, Lawrence Berkeley National Laboratory, Peking University, and the German Institute of Synchrotron Radiation.The specific technique...

    2024-11-13
    Δείτε τη μετάφραση
  • The influence of laser beam drift on SLM thin-walled TC11 specimens at high scanning speed

    AbstractDue to the width of the laser melt pool and the sintering effect on the surrounding powder, the experimental size of the selective laser melting (SLM) sample will be larger than the design size, which will greatly affect the dimensional accuracy and surface quality of the thin-walled sample. In order to obtain SLM thin-walled TC11 specimens with precise dimensions, an orthogonal experiment...

    02-24
    Δείτε τη μετάφραση
  • Measurement of Fine Structure and Spin Interaction of Quantum Materials through TriVista High Resolution Spectral Measurement System

    backgroundThe Jörg Debus team from the Technical University of Dortmund in Germany is dedicated to researching optical quantum information processing and quantum sensing in materials with potential applications. The team mainly studies the fine structure of materials under light fields, such as quantum dots, quantum effects of two-dimensional materials, semiconductor defects in diamonds, and ...

    2024-03-11
    Δείτε τη μετάφραση