简体中文

Shanghai Institute of Optics and Mechanics proposes a new scheme of Er doped silicate fiber as an extended L-band broadband amplifier

530
2024-06-05 15:03:58
查看翻译

Recently, Hu Lili, a research group of the Advanced Laser and Optoelectronic Functional Materials Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, proposed a new scheme based on field strength optimization of Er doped silicate fiber as an extended L-band broadband amplifier. Relevant research achievements were published in Optics Letters under the title of "Er doped silicate fiber amplifiers in the L-band with flat gain".

The rapid development of big data and artificial intelligence has put forward higher requirements for the capacity of dense wave division multiplexers (DWDMs) in the new generation of optical communication systems. Compared to the mature C-band (1530-1565nm) erbium-doped fiber amplifier (EDFA), the L-band (1565-1625nm) EDFA has become a new generation of scalable optical communication products. However, the development of L-band EDFA faces difficulties and challenges: the gain of Er-doped fibers is limited by low longwave emission cross-sections and severe excited state absorption, resulting in very small gains for wavelengths greater than 1600nm. Therefore, how to improve the long wave gain of Er doped fiber materials is a key scientific problem that urgently needs to be solved in L-band broadband amplifiers.

The research team proposes a new scheme of micro ion field emphasis control to enhance the gain and spectral shaping of Er ions in a silicate fiber matrix. The feasibility of using silicate optical fibers as long wave gain enhancing substrates for Er ions has been confirmed both theoretically and experimentally. This scheme has achieved significant improvement in L-band gain and optimization of gain flatness in Er doped silicate optical fibers. At the same time, by adopting an all fiber scheme with heterogeneous fiber fusion, only a 1.5m long silicate fiber is used. At the longest wavelength of 1625nm in the L-band, the gain coefficient is 4.7dB/m, which is better than the 0.3dB/m of quartz fiber. In addition, the gain flatness of the fiber in the L-band is 0.8dB, which is better than the 5dB of quartz fiber. Compared to quartz fiber, this fiber has a higher doping concentration, shorter usage length, and larger gain coefficient, providing key material support for the new generation of L-band EDFA.

This work has received support from the National Natural Science Foundation of China and national key projects.


Figure 1: L-band gain of Er doped silicate optical fiber

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

相关推荐
  • 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
    查看翻译
  • Polarization of Laser Writing Waveguides Controlled by Liquid Crystal

    German researchers have developed a method for controlling and manipulating optical signals by embedding liquid crystal layers into waveguides created by direct laser writing. This work has produced devices capable of electro-optic control of polarization, which may open up possibilities for chip based devices and complex photonic circuits based on femtosecond write waveguides.Researcher Alexandro...

    2024-03-13
    查看翻译
  • NKT Photonics utilizes fiber lasers to achieve deep space communication links

    On July 7, the European Space Agency (ESA), established Europe’s first deep-space optical communication link with NASA’s Psyche mission using a high-power fiber laser system supplied by NKT Photonics, a subsidiary of Hamamatsu.NKT’s announcement stated, “This achievement, conducted with NASA/JPL’s Deep Space Optical Communications (DSOC) demonstrator, marks a significant leap forward in high-data-...

    07-21
    查看翻译
  • Munich Laser World of Photonics 2025 Grand Opening

    On June 24-27, 2025, the global optoelectronic event Laser World of Photonics 2025 was grandly opened in Munich, Germany. This exhibition brings together over 1350 companies from 43 countries, making it the largest in history. Among them, international laser giants Coherent, IPG, TRUMPF, and MKS showcased their latest breakthroughs and future directions in laser technology with multiple heavyweigh...

    06-25
    查看翻译
  • The future potential of underwater laser applications is unlimited

    The foundation of offshore wind turbines, port protection systems, steel sheet piles, river barriers, water gates, and even pipelines can all be directly processed in water. Another application area is the dismantling of abandoned nuclear reactors, in which case laser technology can gently dismantle steel structures underwater while minimizing the dissolution of radioactive materials.The ocean, wh...

    06-03
    查看翻译