Ελληνικά

Researchers from Chalms University of Technology in Sweden have successfully improved the efficiency of optical combs to become a high-performance laser

479
2023-09-27 14:13:41
Δείτε τη μετάφραση

Researchers from Chalms University of Technology in Sweden have successfully improved the efficiency of optical microcombiners, making them a high-performance laser. This breakthrough will have a wide impact in fields such as space science and healthcare.

The two rings in the figure are micro resonators, which play a crucial role in the implementation of efficient micro combs.

The importance of micro comb technology
The optical micro comb technology has significant scientific and technological application potential. It can be used for high-precision frequency measurement and is considered one of the most disruptive technologies since the birth of lasers. In short, a micro comb is like a ruler made of light, which can accurately measure the frequency of light.

Its working principle is based on the laser sending photons, which circulate in the micro resonator, causing light to be divided into multiple precise frequencies. These frequencies can be accurately positioned against each other, just like scales on a ruler. Therefore, a micro comb can create a light source containing hundreds or even thousands of frequencies, similar to a laser beam emitted uniformly.

Due to the fact that almost all optical measurements are related to the frequency of light, micro comb technology has a wide range of applications, from instruments used to calibrate and measure light year distance signals in space science to tracking health status through air analysis in healthcare.

Key breakthroughs in solving efficiency issues
However, the previous micro comb technology had a fundamental problem, which was its low efficiency. The energy conversion efficiency between light and micro combs is not high, resulting in only a small portion of power available in the laser beam.

Researchers have made breakthrough progress on this issue. By using two micro resonators, they successfully increased the power of the micro comb laser beam, increasing the efficiency from about 1% to over 50%. This method utilizes the interaction between two micro resonators, where one resonator couples light from the laser with the other resonator, similar to impedance matching in electronic circuits.

Prospects and Applications
The method described in this study has opened up a new field for the application of high-performance lasers and has been patented. Researchers have also established a start-up company, Iloomina AB, to push this technology to a wider market.

The new micro combs have enormous transformative potential as they enable high-performance laser technology to be used in more markets. For example, frequency combs can be used for autonomous LiDAR modules, GPS satellites, and environmental sensing drones, as well as supporting bandwidth intensive artificial intelligence applications in data centers. This breakthrough will accelerate the adoption of high-performance laser technology in various fields, including healthcare and space science.

Source: China Optical Journal Network

Σχετικές προτάσεις
  • Breakthrough development of terahertz quantum cascade lasers

    With the development of groundbreaking components for terahertz quantum cascade lasers, a huge leap has been made in the field of laser technology. A group of researchers have successfully designed a broadband single-chip external coupler with the potential to redefine the functionality of terahertz QCL.The new external coupler is fundamentally based on planar bimetallic waveguides. Its design is ...

    2024-01-04
    Δείτε τη μετάφραση
  • Scientists build high-power cladding-pumped Raman fiber laser in 1.2 μm band

    Laser sources operating in the 1.2 μm band have some unique applications in photodynamic therapy, biomedical diagnostics, and oxygen sensing. In addition, they can be used as pump sources for mid-infrared optical parameter generation and visible light generation through frequency doubling.Laser generation in the 1.2 μm band has been achieved by different solid-state lasers, including semicon...

    2024-01-31
    Δείτε τη μετάφραση
  • Process practice of blue light semiconductor laser cladding copper on copper

    Laser Cladding, also known as laser cladding or laser cladding, is a method of adding cladding material to the surface of the substrate and using a high-energy density laser beam to melt it together with the thin layer on the surface of the substrate. It forms a metallurgical bonded additive cladding layer on the surface of the substrate, which can be used for surface strengthening and defect repa...

    2024-04-09
    Δείτε τη μετάφραση
  • Low noise! Switzerland develops a new type of laser

    According to foreign media reports, scientists from the Physics Research Institute and the Institute of Physics and the Center for Quantum Science and Engineering at the Swiss Federal Institute of Technology Lausanne (EPFL) in Lausanne, Switzerland have made a new progress in the field of excitation science, developing a smaller and quieter laser system than previous products.Small laser system (I...

    2024-07-03
    Δείτε τη μετάφραση
  • The researchers used ultrafast lasers to create nanoscale photonic crystals

    The optical properties of photonic crystals are closely related to their lattice constants, which are usually required to be in the same order of magnitude as the operating wavelength. In a crystal material, the photonic crystal structure is formed by the periodic arrangement in space of units whose dielectric constant is different from that of the crystal itself, and whose lattice constant depend...

    2023-08-04
    Δείτε τη μετάφραση