日本語

The research team at the University of Electronic Science and Technology of China has developed three innovative photonic devices

797
2025-05-30 10:55:47
翻訳を見る

Recently, Professor Nie Mingming from the Key Laboratory of Fiber Optic Sensing and Communication at the School of Information and Communication Engineering, University of Electronic Science and Technology of China, in collaboration with the University of Colorado Boulder, published a research paper titled "Cross polarized stimulated Brillouin scattering empowered photonics" in the top international journal Nature Photonics. For the first time, the cross polarized Brillouin gain characteristics in lithium niobate crystals were systematically revealed, and their efficient coupling mechanism with second-order nonlinearity was demonstrated. As a result, three innovative photonic devices were successfully developed, which can provide new solutions for next-generation optical communication, precision measurement, and quantum technology.

The strong gain characteristics of the cross polarized stimulated Brillouin effect in lithium niobate, combined with its ability to control multiple physical fields such as thermo optics and electro-optic, can provide a new design dimension for new light sources and photonic integrated chips. Three innovative devices have been researched and implemented. (1) Reconfigurable stimulated Brillouin laser: By utilizing the birefringence thermal optical effect and cross polarization stimulated Brillouin effect of lithium niobate crystal, it breaks through the limitation of traditional stimulated Brillouin lasers that are difficult to tune due to fixed cavity length, and achieves sub hertz narrow linewidth laser output with arbitrary wavelength adjustment. (2) Efficient mode converter: For the first time, the Brillouin enhanced four wave mixing effect inside the cavity has been achieved, and a multi-dimensional high-efficiency mode conversion device for polarization, transverse mode, and longitudinal mode has been developed. (3) Brillouin second-order laser and frequency comb: By utilizing the synergistic effect of cross polarization Brillouin effect and second-order nonlinearity, the near-infrared and visible dual band laser and frequency comb pumped by intracavity Brillouin laser have been achieved for the first time. With the maturity of thin-film lithium niobate photonics integration technology, it is expected to use the revealed cross polarization stimulated Brillouin effect to develop more innovative photonics devices in addition to the above-mentioned devices, achieve miniaturization and low-power operation on the chip, and bring changes to cutting-edge applications such as optical atomic clocks, high-precision gyroscopes, optical communication, and optical neural networks.

This study was supported by the National Natural Science Foundation of China and the Top Basic Research Achievement Cultivation Program of the University of Electronic Science and Technology of China.

Professor Nie Mingming from the University of Electronic Science and Technology of China is the first author and co corresponding author of the paper, while Professor Shu Wei Huang from the University of Colorado Boulder is the co corresponding author of the paper.

Source: Opticsky

関連のおすすめ
  • Focusing on Lithuanian solid-state and fiber laser manufacturer EKSPLA

    In this interview, Dr. Antonio Castelo, EPIC Biomedical and Laser Technology Manager, had a conversation with Aldas Juronis, CEO of EKSPLA, a Lithuanian innovative solid-state and fiber laser manufacturer.What is the background of your appointment as the CEO of EKSPLA?In 1994, I graduated from Kaonas University of Technology in Lithuania with a Bachelor's degree in Radio Electronic Engineering. At...

    2023-11-07
    翻訳を見る
  • Photonic hydrogel of high solid cellulose with reconfigurability

    Recently, Qing Guangyan, a researcher team from the Research Group on Bioseparation and Interface Molecular Mechanism (1824 Group) of Biotechnology Research Department of Dalian Institute of Chemical Physics, Chinese Academy of Sciences, designed and prepared a highly solid cellulose photonic hydrogel with reconfigurability and mechanical discoloration. This preparation method opens up a new way t...

    02-17
    翻訳を見る
  • Fraunhofer ILT develops laser beam shaping platform to optimize PBF-LB process

    Recently, the German research institution Fraunhofer ILT team is collaborating with the Department of Optical Systems Technology (TOS) at RWTH Aachen University to develop a testing system aimed at studying complex laser beam profiles using a new platform. This platform can construct customized beam profiles for laser powder melting (PBF-LB) 3D printing, thereby improving part quality, process sta...

    2024-12-23
    翻訳を見る
  • Laser Uranium Enrichment Company (GLE) accelerates development

    Paducah, located in western Kentucky, may become the location of the world's first commercial facility to adopt this technology.Since 2016, Global Laser Enrichment Company (GLE) has partnered with the US Department of Energy to use its unique molecular process to concentrate 200000 tons of depleted uranium "tails" stored at the former Padiuka gas diffusion plant in western Kentucky.After years of ...

    2024-06-22
    翻訳を見る
  • 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
    翻訳を見る