Русский

Enlightra and DESY Hamburg developed an improved and scalable comb laser

198
2024-01-26 13:49:54
Посмотреть перевод

Laser technology startup Enlightra collaborates with DESY Hamburg to develop and design more stable and efficient comb lasers. This work demonstrates a microresonator with programmable synthetic reflection, providing tailored injection feedback for driving lasers. This technology has significantly improved compared to traditional self injection locking technology and can be produced using standard lithography.

A comb laser is a multi color light source with an equidistant range of 100 GHz to 1 THz. This technology has high value for the data required for artificial intelligence applications in optical communication.

One of the key aspects of the practicality of comb lasers is their color purity. Although lasers appear to have very pure colors, in most cases, the beam is composed of many very similar colors with different tones. In applications such as optical communication, it is hoped that a laser can emit many very pure different colors. This is where comb lasers come in handy.

Self injection locking has always been a standard method to improve the purity of comb lasers. This method uses a ring resonator to filter out noise. Through Rayleigh backscattering, light is reflected back from random defects within the ring and sent back to the laser for injection locking.

"The problem with relying on random defects is that they can rely on color, and they are not very strong," said John Jost, co-founder of Englightra and one of the authors of the paper. "There are some limitations, and you would like to send more light back to the laser, as this is very helpful for injection locking."

One of the main advances in this study is the design of how light scatters inward and backward in a ring resonator. They achieved this goal by designing the inner surface of the ring, which only strongly scatters a specific color. Jost told Photonics Media that when light moves around the ring, it feels the pattern and can send more light than usual for injection locking. The author conducted various tests using different customized nanostructured ring resonators. They use semiconductor laser tubes to dock and couple to photonic chips with ring resonators. This technology has been demonstrated in the C-band, but it is equally effective in all telecommunications frequency bands. The actual resonator is embedded in the integrated photonic chip, with a silicon nitride photonic crystal ring resonator embedded in the silicon dioxide cladding.

"The photonic integrated circuits used in this work were manufactured in industrial foundries, so the technology is ready to scale up," Jost said. "The ability to design light scattering has opened a whole new door to more advanced designs, allowing us to customize comb shaped laser spectra to our needs in an unprecedented way."

Laser can be combined with various photonic integrated circuits. For example, it can support fast optical I/O units or optical field programmable gate arrays. This technology will benefit data intensive applications such as generative artificial intelligence, as well as new types of decomposed computers and memory architectures.

According to Jost, he and his team have more ideas than they may have tried.
The study was published in Nature Photonics.

Source: Laser Net

Связанные рекомендации
  • Multinational research team achieves breakthrough in diamond Raman laser oscillator

    Recently, the team led by Professor Lv Zhiwei and Professor Bai Zhenxu from Hebei University of Technology, in collaboration with Professor Richard Mildren from Macquarie University in Australia and Professor Takashige Omatsu from Chiba University in Japan, successfully achieved direct output of Raman vortex optical rotation with large wavelength extension in a diamond Raman laser oscillator. This...

    02-27
    Посмотреть перевод
  • The Science Island team has made breakthroughs in high pulse energy mid infrared fiber transmission

    Recently, the Jiang Haihe Research Group of the Health Institute of the Chinese Academy of Sciences Hefei Institute of Materia Medica made important progress in the research of the high-energy pulsed laser transmission system in the mid infrared band, and designed a 78 μ The 6-hole microstructure anti resonant hollow core fiber (AR-HCF) with a larger core diameter achieved efficient transmissio...

    2024-03-23
    Посмотреть перевод
  • More penetrating than X-rays μ Meson imaging is expected to be advanced with high-power lasers

    μ Mesons are naturally occurring subatomic particles that can penetrate much deeper dense matter than X-rays. Therefore, μ Meson imaging can enable scientists to capture images of nuclear reactors, volcanoes, tsunamis, and hurricanes. However, this process is slow, as it occurs naturally μ The low flux of mesons requires several months of exposure time for the image.It is understood that ...

    2023-11-01
    Посмотреть перевод
  • Advanced optical giant Schott announces completion of Malaysia factory

    Recently, German optical giant SCHOTT is pleased to announce that its advanced production plant located in Gulim, Kedah, Malaysia has been successfully completed. This milestone event was celebrated with the joint witness of employees, clients, and representatives from the Malaysian Investment Development Authority (MIDA).The completion of the new factory marks a significant increase in Schott's...

    2024-10-16
    Посмотреть перевод
  • What are the "unique secrets" of each family in terms of breaking the game and high reaction materials?

    Laser is considered a sharp sword that cuts iron like mud, but even sharper swords can have tricky moments. For example, in certain scenarios, there are materials with higher reflectivity, such as silver, copper, etc., known as "high reflection materials". High reflective materials have a low absorption rate for lasers, making them difficult to process and potentially causing equipment failure or ...

    2023-11-06
    Посмотреть перевод