Tiếng Việt

Shanghai Institute of Optics and Fine Mechanics has made progress in synchronously pumped ultrafast Raman fiber lasers

568
2025-06-07 10:47:47
Xem bản dịch

Recently, the research team led by Zhou Jiaqi from the Aerospace Laser Technology and Systems Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made progress in the study of synchronously pumped ultrafast Raman fiber lasers. The related achievements were published in Optics Express under the title "Revealing influence of timing jitter on ultra fast Raman fiber laser synchronously pumped by gain switched diode".

Synchronous pumping technology utilizes ultrafast pulses with high peak power as pumps. Compared to traditional mode-locked Raman fiber lasers with continuous optical pumping, it can effectively overcome the problem of weak Raman gain and obtain high-performance Raman solitons under short cavity conditions. For synchronously pumped Raman fiber lasers, using a gain switching diode (GSD) with adjustable repetition rate as the pump can effectively simplify the synchronization difficulty compared to a mode-locked pump source with fixed repetition rate.

The research team built a GSD synchronously pumped Raman fiber laser (Figure 1), and the experimental results revealed that the inherent strong time jitter characteristics of GSD pump pulses are the fundamental reason for reducing the time-domain stability and frequency-domain coherence of output Raman pulses. A detailed study was conducted on the time-frequency characteristics of output Raman pulses under different pump pulse widths, confirming that stretching the pulse width can effectively reduce the influence of pump time jitter and suppress the relative intensity noise of output Raman pulses (Figure 2). In addition, comparative experiments were conducted using a mode-locked laser instead of GSD pump, and the results further confirmed the key influence of pump pulse time jitter on the frequency domain coherence of output Raman pulses. This study not only deepens the understanding of GSD synchronously pumped Raman fiber lasers, but also paves the way for the generation of high-performance ultrafast Raman pulses.


Figure 1. Schematic diagram of experimental setup for GSD synchronously pumped Raman fiber laser


Figure 2. Relative intensity noise of output Raman pulses under different pumping conditions


Relevant work has been supported by the National Key R&D Program, the Youth Innovation Promotion Association of the Chinese Academy of Sciences, the National Natural Science Foundation of China and other projects.

Source: Opticsky

Đề xuất liên quan
  • NUBURU will enter a new stage of diversified development

    Recently, NUBURU, a global developer of high-power and high brightness industrial blue light laser technology, announced the signing of a strategic commitment letter, officially launching a deep layout in the field of national defense and security. This transformation plan covers capital restructuring, technology mergers and acquisitions, and management team upgrades, marking a new stage of divers...

    02-26
    Xem bản dịch
  • The United States promotes the development of next-generation EUV lithography technology

    LLNL has long been a pioneer in the development of EUV lithography technology.A laboratory located in California will lay the foundation for the next development of extreme ultraviolet (EUV) lithography technology. The project is led by Lawrence Livermore National Laboratory (LLNL) and aims to promote the next development of EUV lithography technology, centered around the laboratory's developed dr...

    01-06
    Xem bản dịch
  • Dutch satellite instruments have achieved milestone achievements in transmitting laser data to Earth

    TNO wrote that this is the first time Dutch technology has been used to send data from a satellite to a ground station press release on Earth. This technology uses invisible laser signals to achieve faster and safer data flow compared to ubiquitous communication radio frequencies.Kees Buijsrogge, Director of TNO Space, said, "This critical milestone marks a significant achievement for the Netherla...

    2024-01-25
    Xem bản dịch
  • 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
    Xem bản dịch
  • Enhanced laser heterodyne spectroscopy contributes to the measurement of atmospheric greenhouse gases

    The research team led by Professor Gao Xiaoming of the Chinese Academy of Sciences Hefei Institute of Physical Sciences has improved the measurement accuracy of atmospheric greenhouse gases by using erbium-doped fiber amplifier assisted laser heterodyne radiometer.The study was published in the Journal of Optics and was selected as an editor's selection.LHR is renowned for its high sensitivity and...

    2023-10-25
    Xem bản dịch