Italiano

First time! Significant progress has been made in low repetition rate fully polarization maintaining nine cavity fiber lasers

180
2024-05-07 16:45:29
Vedi traduzione

Recently, the research team of the Aerospace Laser Technology and System Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, reported for the first time a low repetition frequency full polarization maintaining 9-shaped cavity fiber laser at 915 nm. The relevant research results were published in Optics Express under the title "Low repetition rate 915 nm figure-9 ultrafast laser with all fiber structure".

Laser with a wavelength around 900 nm is highly favored in the field of optical measurement due to its high responsiveness on silicon-based detectors. The low repetition rate fiber laser in this band can effectively reduce distance ambiguity in Time of Flight (TOF), and has the characteristics of good beam quality, compact structure, and long-term stability, making it an ideal light source for space detection. However, due to the strong dispersion and nonlinear effects of single-mode fibers, it is difficult for lasers to achieve single pulse operation in long fiber cavities. Therefore, the repetition frequency of traditional mode-locked fiber lasers is usually limited to tens to hundreds of MHz.

In response to the above issues, researchers have proposed a low repetition rate fully polarized nine cavity fiber laser with a central wavelength of 915 nm. By designing and optimizing the laser structure, high-energy single pulse output was achieved at low repetition rates. The optimized seed was amplified in one stage to obtain a pulse output with a pulse width of 15.2 ps and a single pulse energy of 4.7 nJ at a repetition frequency of 3.1 MHz. The mode locking performance of the laser has been confirmed through long-term power and spectral stability tests. This compact and long-term reliable fiber laser is a promising light source for future space laser ranging.

This work was supported by the Youth Innovation Promotion Association of the Chinese Academy of Sciences, the National Natural Science Foundation of China, and the Shanghai Natural Science Foundation.

Figure 1. Experimental setup diagram of a 915 nm low repetition rate fully polarization maintaining nine cavity fiber laser

Figure 2. Long term stability testing of output power and spectrum, and output characteristics of pulses in frequency and time domains

Source: Yangtze River Delta Laser Alliance

Raccomandazioni correlate
  • Is CTC technology in the booming new energy industry likely to disrupt the fiber laser industry?

    Recently, the term CTC technology has become a hot topic in the new energy vehicle industry. During the relatively slow period of electrochemical innovation, this structural innovation effectively helped the new energy industry reduce costs and increase efficiency, while also increasing the range of new energy vehicles to a certain extent. However, recently the author learned that the concept of C...

    2023-09-18
    Vedi traduzione
  • Researchers at Georgia Institute of Technology have developed cost-effective nanoscale printing

    A team of researchers from Georgia Institute of Technology has developed a scalable printing system for metal nanostructures using a new technology called superluminescent light projection. The inventor of this technology Dr. Sourabh Saha and Jungho Choi submitted a patent application for nanoscale printing.Nowadays, the cost of existing nanoscale printing technologies hinders their widespread use...

    2024-02-19
    Vedi traduzione
  • Chinese femtosecond laser company completes Pre-A round of financing

    Recently, Qingdao Free Trade Laser Technology Co., Ltd. successfully completed the Pre-A round of financing. This financing is led by Shandong Letong Science and Technology Industry Finance New Energy Industry Development Fund Center (Limited Partnership). This financing will focus on attracting professional talents, including optical engineering experts, algorithm engineers, etc., in order to a...

    2024-11-19
    Vedi traduzione
  • LPKF 2024 H1 revenue up 15% year-on-year

    Recently, LPKF Laser, a leading supplier of innovative laser solutions in Germany, released its performance report for the first half of the 2024 fiscal year as of June 30, demonstrating the company's steady performance and forward-looking layout in a complex market environment. According to the financial report, LPKF Laser&Electronics SE achieved significant growth in comprehensive revenue ...

    2024-07-31
    Vedi traduzione
  • 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
    Vedi traduzione