한국어

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

521
2023-08-22 15:03:42
번역 보기

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

관련 추천
  • A new method for generating controllable optical pulse pairs using a single fiber laser

    Researchers from Bayreuth University and Konstanz University are developing new methods to control ultra short laser emission using soliton physics and two pulse combs in a single laser. This method has the potential to greatly accelerate and simplify laser applications.Traditionally, the pulse interval of lasers is set by dividing each pulse into two pulses and delaying them at different, mechani...

    2024-01-15
    번역 보기
  • Export of Pentium Laser Automation Production Line to Japan

    Recently, several large trucks from the Wenzhou factory of Pentium Laser were lined up and ready to go. The high-power and high-speed laser cutting automation production line developed and produced by Pentium Laser has been strictly inspected and accepted by Japanese customers for 15 days and 24 hours of uninterrupted operation. Today, it was loaded and sent to Japan. This laser cutting automati...

    2024-12-06
    번역 보기
  • China has successfully developed the world's first 193 nanometer compact solid-state laser

    The Chinese Academy of Sciences reduced the volume of the deep ultraviolet laser by 90% and achieved 193 nm vortex beam output for the first time. Professor Xuan Hongwen described "loading truck equipment into the car trunk". This technology enables a 30% reduction in the size of lithography features, breaking through the bottleneck of the 2-nanometer process. In the next three years, laser power ...

    03-24
    번역 보기
  • The University of Rochester has received nearly $18 million to build the world's highest power laser system

    After receiving a $14.9 million contract from the US Department of Defense (DOD) last month to study the pulse laser effect, the University of Rochester recently received nearly $18 million in funding from the National Science Foundation (NSF) for the key technology design and prototype of the EP-OPAL, also known as the OMEGA EP coupled optical parametric amplifier line (OPAL).EP-OPAL is a new fac...

    2023-09-28
    번역 보기
  • 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
    번역 보기