简体中文

Microcomb launches a simplified design for powerful lasers based on chips

794
2024-05-25 14:49:56
查看翻译

Researchers at the University of Rochester have created new micro comb lasers that go beyond previous limitations and have simple designs suitable for various applications. The research results are published in Nature Communications.

Optical frequency combs are optical measurement instruments that have revolutionized atomic clocks, spectroscopy, metrology, and other fields. However, the difficulty of creating frequency comb generators at the semiconductor level limits their application in everyday technologies such as handheld electronic devices.

What is a micro comb?
Optical frequency combs generate spectra. They are composed of several coherent beams that are evenly spaced and adjusted to different colors or frequencies. The resulting shape is similar to the teeth on a hair comb. Scientists have been developing micro combs, a miniaturized version of this technology that can be installed on small chips.

Although progress has been made in the design of micro comb prototypes, scientists have not yet created functional versions for practical applications. Some of these challenges include low power efficiency, limited controllability, slow mechanical response, and requirements for pre configuration of complex systems.

The simplified method has been developed by a group of scientists led by Professor Lin Qiang from the Institute of Optics and the Department of Electrical and Computer Engineering at the University of Rochester, who has developed a novel strategy to solve these problems in a single device.
The main author of this paper Lin's doctoral student Jingwei Ling claimed that previous methods often relied on injecting a single wavelength of laser into a nonlinear converter, which could then convert a single wavelength into multiple wavelengths to form an optical comb.

The simplicity of the "multi in one" micro comb laser reduces power requirements, lowers costs, and has excellent adjustability and turnkey operation.
The implementation of these micro comb lasers continues to pose challenges, especially in establishing manufacturing processes to generate such small components within the required manufacturing tolerance range. However, the researchers expect their equipment to be used in telecommunications systems and autonomous vehicle for light detection and ranging (LiDAR).

The Defense Advanced Research Projects Agency and the National Science Foundation of the United States provided support for this research.

Source: Laser Net

相关推荐
  • Tongkuai will participate in the laser fusion energy research program

    The US Department of Energy recently allocated $42 million to support the development of laser fusion technology and designated three new research and innovation centers. This strategic investment aims to promote laser based nuclear fusion to play an important role as a clean and sustainable energy source in the future. Trumpf is one of the main participants known for its laser expertise and activ...

    2024-02-01
    查看翻译
  • Fabrinet Laser Business Revenue Surges

    Recently, Fabrinet released its financial report for the three months ended December 27, 2024, showing that its sales and revenue exceeded expectations. During the reporting period, the company achieved sales of $834 million, a year-on-year increase of 17%. Net income increased by 25% during the same period, reaching $86.6 million.Although the growth in performance is still dominated by the optica...

    02-07
    查看翻译
  • Germany and the United States jointly build a $150 million laser equipment laboratory for studying inertial fusion energy and high energy density physics

    German laser Fusion developer Marvel Fusion said it will partner with Colorado State University (CSU) on a new $150 million laser equipment lab to study inertial fusion energy and high energy density physics."It will be home to one of the most powerful laser facilities in the world and an international center for laser fusion energy and high energy density physics research," the company said in a ...

    2023-08-10
    查看翻译
  • Researchers have placed photon filters and modulators on standard chips for the first time

    Researchers at the University of Sydney combined photon filters and modulators on a single chip, enabling them to accurately detect signals on the broadband RF spectrum. This work brings photonic chips closer to one day, potentially replacing larger and more complex electronic RF chips in fiber optic networks.The Sydney team utilized stimulated Brillouin scattering technology, which involves conve...

    2023-12-26
    查看翻译
  • Tokyo Institute of Technology collaborates with EX Fusion to promote laser fusion energy closer to commercialization

    Recently, Tokyo Institute of Technology and EX Fusion established a collaborative research group focused on promoting liquid metal equipment to achieve commercial laser fusion reactors. The two sides held an official signing ceremony in Tokyo on October 11th, marking the official start of their cooperation.The EX Fusion Liquid Metals Collaborative Research Group was established with the support of...

    2023-10-17
    查看翻译