Español

Scientists have developed the most powerful ultraviolet laser using LBO crystals

798
2024-04-07 16:08:19
Ver traducción

It is reported that recently researchers from the Chinese Academy of Sciences have achieved the highest power output of 193 nm and 221 nm lasers using lithium borate (LBO) crystals. This achievement lays the foundation for the further application of the laser in deep ultraviolet (DUV) spectroscopy.
The laser in DUV spectroscopy has many applications in science and technology, such as defect detection, spectroscopy, lithography, and metrology. Traditionally, argon fluoride (ArF) lasers have been used to generate high-power 193nm lasers for applications such as lithography.
Other applications of DUV lasers include the production of microelectronic devices, semiconductor integrated circuits, and medical applications for ophthalmic surgeries. In these applications, it is commonly referred to as an excimer laser.

However, these lasers are not completely coherent and therefore cannot be used for more sensitive applications such as interferometric lithography, where fine features must be printed in the form of arrays. Such precise applications require more coherent lasers, which provides an opportunity for researchers to manufacture hybrid excimer lasers.

What is a hybrid excimer laser?
In order to achieve coherence requirements, scientists have been considering using solid-state seeds instead of gas (ArF) oscillators to make them hybrid lasers. In addition to improving coherence, this design also aims to increase the photon energy of the laser, so that it can even be used with carbon compounds with minimal thermal impact.

To achieve this goal, the linewidth of the 193nm seed laser needs to be maintained below 4 GHz. The statement states that this is the coherence length crucial for interference seen through the use of currently available solid-state laser technology.

What achievements have been made on DUV lasers?
Researchers from the Chinese Academy of Sciences have achieved the same linewidth as the 193 nm hybrid excimer laser by using LBO crystals. In their device, researchers used a complex two-stage and frequency generation process to achieve a laser output of 60 milliwatts (60 megawatts).
The device includes two lasers, one at 258 nanometers and the other at 1553 nanometers. These lasers come from ytterbium hybrid lasers and erbium-doped fiber lasers, ultimately forming 2mm x 2mm x 30mm Yb: YAG bulk crystals to provide the required laser output.

The resulting DUV laser pulse has a duration of 4.6 nanoseconds (ns), a repetition rate of 6 kHz, and a linewidth of approximately 640 MHz.
It is worth noting that the output power of the 193nm laser and its accompanying 221nm laser is 60mW, which is the highest power generated using LBO crystals.

The conversion efficiency of 221-193nm is 27%, and the conversion efficiency of 258-193nm is 3%, setting a new benchmark.
This study demonstrates the feasibility of using solid-state lasers to pump LBO, which can reliably and effectively generate 193nm narrow linewidth lasers, and opens up a new path for manufacturing cost-effective high-power DUV laser systems using LBO
Therefore, researchers believe that LBO crystals can be used to generate more DUV lasers, with output powers ranging from a few milliwatts to a few watts, opening up further avenues for these wavelengths.
This research result is published in the journal Advanced Photonic Nexus.

Source: OFweek

Recomendaciones relacionadas
  • Webasto joins hands with Tongkuai to lead the new trend of electric vehicle technology

    In the process of selecting electric vehicles, the effectiveness of the heating system is often overlooked. However, this system is crucial for providing a warm and comfortable driving environment and removing frost and fog from winter windows. More importantly, it can also improve battery efficiency, as the battery performs best within a specific temperature range.Unlike internal combustion engin...

    2024-06-12
    Ver traducción
  • An advanced laser processing laboratory for semiconductor materials and an all solid-state advanced laser research center will be established here

    On October 15th, the Laipu Technology National Headquarters and Integrated Circuit Equipment R&D and Manufacturing Base project successfully held a groundbreaking ceremony in the Chengdu High tech Zone.Project Business CardTotal project investment:1.66 billion yuanProject area:Covering an area of 39 acres, with a construction area of 65000 square metersProject Planning:Construction will begin...

    2023-10-18
    Ver traducción
  • Luxium Solutions completes strategic acquisition of Inrad Optics, a leading optical materials company

    Recently, Luxium Solutions, a high-performance crystal material supplier, announced the successful completion of its strategic acquisition of Inrad Optics, a leading optical materials company. This milestone transaction not only greatly enriches Luxium's innovative product matrix, but also injects valuable resources, operational wisdom, and capital drive into Inrad Optics. Both parties will work t...

    2024-07-20
    Ver traducción
  • Germany Developed Short Wave Green Laser Underwater Cutting Technology

    With the prominent energy issues in various countries around the world, the utilization and development of energy have become a hot topic, and the demand for renewable energy is constantly increasing. The existing underwater infrastructure is no longer sufficient and needs to be dismantled using appropriate modern technology. For example, in order to increase the power of offshore wind power plant...

    2023-09-18
    Ver traducción
  • Researchers have discovered a new method to improve the resolution of laser processing

    Customized laser beams focused through transparent glass can generate a small dot inside the material. Researchers from Northeastern University have reported a method of using this small spot to improve laser material processing and increase processing resolution.Their research results are published in the journal Optics Letters.Laser processing, like drilling and cutting, is crucial in industrie...

    2024-03-28
    Ver traducción