Français

Changchun Institute of Optics and Fine Mechanics has developed a high brightness HiBBEE non-uniform waveguide semiconductor laser

754
2025-03-18 14:14:23
Voir la traduction

High brightness semiconductor lasers have extremely important applications in fields such as laser radar. Traditional semiconductor lasers face challenges such as large vertical divergence angle, elliptical beam output, multiple lateral modes, and poor beam quality, which limit the direct application of high brightness semiconductor lasers.

In response to this challenge, the team from the Bimberg Sino German Green Photonics Research Center at Changchun Institute of Optics and Fine Mechanics has adopted a high brightness vertical wide area edge emission (HiBBEE) structure in the vertical direction, using the photonic bandgap effect to replace the traditional total reflection principle for light field limitation, improving the size of the optical mode, and reducing the vertical divergence angle of semiconductor lasers; At the same time, in the lateral direction, non-uniform waveguides were used to suppress lateral higher-order modes, improve the lateral beam quality of semiconductor lasers, and optimize the design and preparation of HiBBEE non-uniform waveguide semiconductor lasers. At a current of 1.5A, the full width at half maximum of the vertical and lateral divergence angles is still as low as 8.6 ° and 5.1 °, while maintaining the fundamental mode output. The brightness is improved by 1.5 times compared to similar devices.

 


Schematic diagram of HiBBEE non-uniform waveguide semiconductor laser structure

 


HiBBEE non-uniform waveguide semiconductor laser brightness


This high brightness HiBBEE non-uniform waveguide semiconductor laser can significantly reduce the application cost of semiconductor lasers and has broad application prospects.

The first author of the article is Wu Chengkun, a doctoral student at the Sino German Center, and the corresponding author is researcher Tian Sicong. The research was supported by the Sino German International Cooperation Project of the National Natural Science Foundation of China (Research on 1250nm High Brightness Quantum Dot Laser for Lidar, No. 62061136010).

Source: opticsky

Recommandations associées
  • 20 million dollars! Undersea fiber optic agreement reached, fully operational by 2026

    Recently, Confluence Networks LLC has announced a long-term partnership agreement with Laser Light Communications Inc., a developer and provider of software controlled optical network services.According to the agreement, Laser Light will adopt Confluence-1 submarine fiber optic network, which Confluence Networks is about to launch, as the core part of its global network. The protocol will last for...

    2024-05-24
    Voir la traduction
  • The scientific research team of Beijing University of Technology opens up a new field of on-chip optics research

    Zhang Jun, an academician team of Beijing University of Technology, pioneered the on chip spectral multiplexing perception architecture, and independently developed the first 100 channel megapixel hyperspectral real-time imaging device in the world, creating the world's highest light energy utilization rate. On November 7, the team's relevant achievements were published in the journal Nature, and ...

    2024-11-08
    Voir la traduction
  • Micro laser opens the door to chip size sensors

    The new device is a frequency comb - a special type of laser that can generate multiple wavelengths of light, each with a fixed frequency interval. On the spectrogram, it looks a bit like the teeth of a comb. In approximately a quarter century since their first development, these "cursor rulers" have completely transformed various high-precision measurements from timing to molecular detection. In ...

    2024-03-13
    Voir la traduction
  • China University of Science and Technology has made progress in in-situ monitoring of thermal runaway in lithium-ion batteries with optical fibers

    Recently, the team of Professor Sun Jinhua and researcher Wang Qingsong of the University of Science and Technology of China and the team of Professor Guo Tuan of Jinan University have made important achievements in the field of early warning of thermal runaway optical fiber detection of lithium-ion batteries.A high-precision, multi-mode integrated fiber optic device that can be implanted in...

    2023-09-04
    Voir la traduction
  • BLT launches a new BLT-S800 metal PBF 3D printer equipped with 20 lasers

    Bright Laser Technologies (BLT), a global leader in additive manufacturing headquartered in China, has launched a new BLT-S800 metal 3D printer with a super large construction volume (800 mm x 800 mm x 600 mm) and a 20 fiber laser configuration, which can shorten part delivery time and achieve rapid customer manufacturing.The BLT-S800 system supports titanium alloy, aluminum alloy, high-temperatur...

    2023-10-19
    Voir la traduction