Português

Shanghai Optics and Machinery Institute has made progress in femtosecond fiber lasers based on twisted Sagnac interferometer mode locking

515
2024-04-22 16:17:22
Ver tradução

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, proposed a torsional Sagnac interferometer and applied it to the fiber laser system, realizing mode locking self starting and pulse shaping. The relevant research achievements were published in the Journal of Lightwave Technology under the title of "Femtosecond fiber laser mode locked by a twisted Sagnac interferometer".

Fiber optic Sagnac interferometers have been widely used in fields such as navigation, sensing, and lasers. The common path structure of Sagnac interferometer has both advantages and disadvantages. One is that precise length control is not required between optical paths, which is crucial for robust interferometric measurements. The second issue is that the transmittance of the Sagnac fiber loop is fixed and cannot be freely tuned. 
Therefore, traditional nine cavity mode-locked fiber lasers based on Sagnac fiber interference loops face the problem of inflexible mode locking.

In this study, researchers proposed a twisted Sagnac interferometer with continuously adjustable phase bias. By introducing 90 ° fusion in the Sagnac loop and utilizing the birefringence of polarization maintaining fibers, linear phase shift differences in clockwise and counterclockwise directions can be introduced and adjusted. When applied in a nine cavity fiber laser system, setting an appropriate transmittance can achieve mode locking self start. The experimental results show that by stretching the fiber to change the linear phase shift difference, the laser can achieve switching between different operating modes. By optimizing the phase shift difference, laser pulses with a spectral bandwidth of 31nm and a pulse duration of 160 fs can be generated at a repetition frequency of 24.5 MHz.

This study achieved real-time continuous adjustment of the transmittance of Sagnac fiber optic interference ring, providing greater flexibility and control for the nine cavity mode-locked laser, and improving its application prospects in optical metrology and sensing fields.
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 Schematic diagram of a twisted fiber Sagnac interferometer.

Figure 2: Experimental setup diagram of femtosecond fiber laser based on twisted fiber Sagnac interferometer mode locking.

Figure 3 Spectral tuning and time-domain characteristics under different clockwise and counterclockwise linear phase shift differences and nonlinear phase shift differences.

Source: Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences

Recomendações relacionadas
  • 150 kW Ultra High Power Laser Sensor Released

    Recently, MKS announced the launch of a brand new Ophir ® A 150 kW ultra-high power laser sensor designed specifically for measuring ultra-high power levels up to 150 kW. This sensor has excellent accuracy and reliability, suitable for industrial and defense fields.This water-cooled calorimeter has a working wavelength range of 900-1100 nm and can measure power from 10 kW to 150 kW. Its extremely ...

    2024-12-27
    Ver tradução
  • Coherent and Faraday sign a partnership to expand the manufacturing scale of high-temperature superconducting (HTS) tapes

    Recently, American photonics giant Coherent and Japan's Faraday 1867 Holdings signed a Letter of Intent (LOI), with the goal of expanding the manufacturing scale of high-temperature superconducting (HTS) tapes to be widely used in large-scale deployment of nuclear fusion reactors, while also promoting the transformation of green energy. Coherent's excimer laser is expected to be more widely used i...

    2023-10-12
    Ver tradução
  • TriLite has partnered with AMS OSram to develop AR smart glasses displays

    TriLite has announced a technical collaboration with ams OSRAM, a global leader in smart sensors and transmitters. Ams Osram will supply its sub-assembled RGB laser diode to "light up" TriLite's Trixel® 3 laser beam scanner (LBS), the world's smallest AR smart glasses projection display.The award-winning Trixel® 3 LBS offers breakthrough compactness and light weight, as well as a bright an...

    2023-09-06
    Ver tradução
  • Aerotech launches new micro hexapod sports platform

    Recently, Aerotech Inc., a global leader in precision motion control and automation, launched the HexGen HEX150-125HL miniature hexapod motion platform, a six degree of freedom (DOF) precision positioning system. This compact and cost-effective hexapod sports platform has a base diameter of 150 millimeters and a nominal height of 125 millimeters. It can achieve a minimum incremental movement of up...

    01-14
    Ver tradução
  • The Key Role of Laser Pointing Stability in the Application of Lithography Systems

    Lithography is one of the core processes in semiconductor manufacturing, and extreme ultraviolet lithography technology, as a new generation lithography technology, is also in a rapid development stage. The basic principle is to use photoresist (also known as photoresist) to form corrosion resistance due to photochemical reactions after being photosensitive, and to engrave the patterns on the mask...

    2024-07-02
    Ver tradução