Español

Bohong has developed a new type of ultrafast laser for material processing

521
2023-08-22 15:03:42
Ver traducción

Chief researcher Clara Saraceno will bring the new laser to the market with the support of ERC funding.

Femtosecond lasers can be used to create high-precision microstructures, such as those required for smartphone displays and various automotive technology applications.

Professor Clara Saraceno from Ruhr University in Bochum, Germany is committed to developing and introducing cheaper and more efficient laser technology to the market.

She has just received a concept validation funding of 150000 euros from the European Research Council (ERC). Her project is called "Ultrafast 2.1 µ m Holmium Lasers for GHz Ablation" ("Giga2u") and is scheduled to run for 18 months.

Faster and more efficient
A standard femtosecond laser emits light pulses with a wavelength of one micrometer and a duration in the range of hundreds of femtoseconds. The energy of each pulse is high, and the system is expensive.

A new type of laser that is faster, more efficient, and at the same time cheaper may become a key technology in the market, "commented Saraceno, head of the Bohong Photonics and Ultrafast Laser Science Group.

Saraceno is currently developing a femtosecond laser with a working wavelength of 2.1 micrometers and a repetition rate of gigahertz.
Compared to shorter wavelength systems currently deployed in industry, this type of light source requires less energy and may be more reliable. They also promised to reduce costs and accelerate production speed. However, so far, these systems have only been used for research applications, such as spectroscopy.

Test market
The "Giga2u" concept validation grant aims to showcase the potential of this technology in industrial applications. This system is mainly used for processing glass and polymers, but it is also used for ablating water-based tissues. The latter may be useful for the future direction of laser surgery applications.

Researchers led by Saraceno hope to develop compact and stable laser prototypes and explore the market potential of this technology. In this process, the group also intends to lay the foundation for establishing a start-up company.

Source: Laser Network

Recomendaciones relacionadas
  • Harvard University and University of Vienna invented tunable laser chips

    Researchers at the Harvard John A. Paulson School of Engineering and Applied Sciences (SEAS) and Vienna University of Technology (TU Wien) have invented a new type of tunable semiconductor laser that shows smooth, reliable, wide-range wavelength tuning in a simple, chip-sized design.Tunable lasers are integral to many technologies, from high-speed telecommunications to medical diagnostics to safet...

    07-16
    Ver traducción
  • Understanding the "single-mode" and "multi-mode" in cleaning lasers in one article

    In industrial production, cleaning is a crucial step. Traditional cleaning methods, such as mechanical cleaning and chemical cleaning, although can meet production needs to a certain extent, often have problems such as low flexibility and environmental pollution. With the advancement of technology, laser cleaning technology has emerged as a new favorite in the cleaning field due to its high effici...

    05-14
    Ver traducción
  • SpaceX will sell satellite lasers to competitors that can accelerate space communication

    SpaceX President Gwynne Shotwell stated at a meeting on Tuesday that the company has started selling satellite lasers for fast space communication to other satellite companies.SpaceX's thousands of Starlink satellites in low Earth orbit use inter satellite laser links to transmit data to each other in space at the speed of light, so that the network can provide more extensive Internet coverage wo...

    2024-05-10
    Ver traducción
  • BLT launches a new BLT-S800 metal PBF 3D printer equipped with 20 lasers

    Bright Laser Technologies (BLT), a global leader in additive manufacturing headquartered in China, has launched a new BLT-S800 metal 3D printer with a super large construction volume (800 mm x 800 mm x 600 mm) and a 20 fiber laser configuration, which can shorten part delivery time and achieve rapid customer manufacturing.The BLT-S800 system supports titanium alloy, aluminum alloy, high-temperatur...

    2023-10-19
    Ver traducción
  • New types of lenses in optics: Researchers develop hybrid achromatic lenses with high focusing efficiency

    Researchers at the University of Illinois at Urbana Champaign have developed compact visible wavelength achromatic mirrors using 3D printing and porous silicon, which are crucial for miniaturization and lightweight optical devices. These high-performance hybrid micro optical devices can achieve high focusing efficiency while minimizing volume and thickness. In addition, these microlenses c...

    2023-12-11
    Ver traducción