Português

First 6-inch thin film lithium niobate photonic chip wafer pilot production line

443
2025-06-11 10:52:36
Ver tradução

Recently, Shanghai Jiao Tong University Wuxi Photon Chip Research Institute (CHIPX) located in Binhu District, Wuxi City, has achieved a breakthrough - the first 6-inch thin film lithium niobate photon chip wafer has been produced on China's first photon chip pilot line, and high-performance thin film lithium niobate modulator chips with ultra-low loss and ultra-high bandwidth have been mass-produced on a large scale, with key technical indicators reaching the international advanced level.

Photon chips are the core hardware carrier of photon computing, and their industrialization process is related to the autonomous and controllable strategy in the field of quantum information. Previously, due to the lack of a common key process technology platform, China's photonics technology faced the dilemma of "difficult mass production of laboratory results", which was a "bottleneck" problem restricting the development of the industry. The launch of the photonic chip pilot line became the key to breaking the deadlock. As the "number one project" of the quantum technology race track in Binhu District and a future industrial landmark in the region, Shanghai Jiao Tong University Wuxi Photon Chip Research Institute broke ground at the end of 2022 and took the lead in launching the construction of China's first photon chip pilot line. Now, the first wafer has been successfully offline, and the pilot platform has achieved mass production and production.

 


It is reported that as a high-performance optoelectronic material, thin film lithium niobate has advantages such as ultrafast electro-optic effect, high bandwidth, and low power consumption, showing great potential in fields such as 5G communication and quantum computing. However, due to the high brittleness of thin film lithium niobate materials, the preparation of large-sized thin film lithium niobate wafers has always been challenging. Currently, with the advanced nanoscale processing equipment and rapid process iteration capability of the pilot platform, the process team has systematically solved the bottleneck of wafer level photonic chip integration through a combination of deep ultraviolet (DUV) lithography and thin film etching through extensive process validation and optimization.

Binhu District is one of the main gathering areas for the integrated circuit industry in Wuxi. A number of high-energy level scientific and technological innovation platforms have been established here, including the National Integrated Circuit Design Center and the Intelligent Industry Innovation Center of Tsinghua Wuxi Research Institute; Gathering over 200 integrated circuit enterprises, we have established an integrated circuit design industry cluster represented by companies such as Zhongke Xin, Zhuosheng Microelectronics, and Guoxin Microelectronics, and have been selected as a characteristic industry cluster in the province.

Source: Opticsky

Recomendações relacionadas
  • Breakthrough development of terahertz quantum cascade lasers

    With the development of groundbreaking components for terahertz quantum cascade lasers, a huge leap has been made in the field of laser technology. A group of researchers have successfully designed a broadband single-chip external coupler with the potential to redefine the functionality of terahertz QCL.The new external coupler is fundamentally based on planar bimetallic waveguides. Its design is ...

    2024-01-04
    Ver tradução
  • Research progress on the interaction between strong laser and matter Electromagnetic induced transparency effect in plasma physics

    The transmission of electromagnetic waves (such as lasers) in plasma is a fundamental issue in plasma physics. In general, electromagnetic waves cannot be transmitted in high-density plasma, but their transmission and energy transfer play a crucial role in applications such as fast ignition laser fusion, laser particle acceleration, and ultra short and ultra bright radiation sources.In 1996, S. fr...

    2024-03-21
    Ver tradução
  • Shanghai Optics and Machinery Institute has made progress in the development of picosecond reflectors based on composite materials

    Recently, the High Power Laser Element Technology and Engineering Department of the Shanghai Institute of Optics and Mechanics, Chinese Academy of Sciences, has made progress in the research of picosecond reflectors based on composite materials. The relevant research results are titled "Hybrid material based mirror coatings for picosecond laser applications" and published in Optics and Laser Techn...

    2024-06-12
    Ver tradução
  • Manufacturing customized micro lenses with optical smooth surfaces using fuzzy tomography technology

    Additive manufacturing, also known as 3D printing, has completely changed many industries with its speed, flexibility, and unparalleled design freedom. However, previous attempts to manufacture high-quality optical components using additive manufacturing methods often encountered a series of obstacles. Now, researchers from the National Research Council of Canada have turned to fuzzy tomography (a...

    2024-05-30
    Ver tradução
  • Laser based deformation may lead to self optimized aircraft wings

    Due to advances in materials science by Stockholm researchers, changing the shape during flight to better handle airflow passing through its aircraft wings may be imminent. The trick involves the melting and drilling capabilities of lasers.Researchers from KTH Royal Institute of Technology in Stockholm, Sweden conducted experiments on paraffin. Using the 2D version of the material, they were able ...

    2024-01-18
    Ver tradução