Türkçe

Germany has developed direct laser welding technology to achieve adhesive free connection from fiber to chip

765
2023-08-22 14:51:18
Çeviriyi gör

Recently, researchers and their partners from the Fraunhofer Institute for Reliability and Microstructure (IZM) in Germany announced the successful development of a laser welding technology that can efficiently fix optical fibers onto photonic integrated circuits (PICs) without the need for adhesive bonding.

This technology is developed in response to biophoton sensing technology, mainly utilizing a miniaturized photonic integrated circuit (PIC) system with highly stable fiber connections.

(Image source: Fraunhofer IZM)
In the past, adhesive was often used in fiber optic interconnections of photonic integrated circuits. However, in the long run, this solution will lead to the occurrence of optical degradation, ultimately resulting in optical transmission loss. The softness of the adhesive can cause the position of the component to change over time and create an interference point between the two layers of glass. As the adhesive ages, this can lead to signal attenuation and brittle connections.

Due to the different volumes of glass fiber and substrate, the heat capacity of the two parts to be joined is not equal, resulting in different heating and cooling behaviors. If there is no appropriate compensation for the difference, it may lead to deformation and cracks during the cooling process. To address this issue, the team used a separate adjustable laser to uniformly preheat the substrate, allowing the melting stage of the fiber and substrate to occur simultaneously.

The technology developed by this project is no longer limited to the experimental setup stage, and the system they developed is designed for industrial environments. The Fraunhofer Institute for Reliability and Microstructure (IZM) in Germany, in collaboration with Finicontec Service, implemented this technology process in automation systems and found that it has high repeatability and scalability. It is equipped with thermal process monitoring up to 1300 ℃, accurate to 1 μ M's positioning system, as well as imaging recognition process and control software.

The potential of high automation enables customers to use photonic integrated circuits (PICs) with maximum coupling efficiency. Industrial integration means a leap in the field of biophotonics applications, as well as quantum communication and high-performance photonics, "G ó mez said.

Source: OFweek

İlgili öneriler
  • From Colored Glass Windows to Lasers: Nanogold Changes Light

    For a long time, craftsmen have been fascinated by the bright red color produced by gold nanoparticles scattered in colored glass masterpieces. The quantum origin of this optical miracle has always been mysterious, until modern advances in nanoengineering and microscopy revealed the complexity of plasma resonance.Now, researchers are preparing to push nano plasma technology, which was once used fo...

    2024-01-02
    Çeviriyi gör
  • 20 million dollars! Undersea fiber optic agreement reached, fully operational by 2026

    Recently, Confluence Networks LLC has announced a long-term partnership agreement with Laser Light Communications Inc., a developer and provider of software controlled optical network services.According to the agreement, Laser Light will adopt Confluence-1 submarine fiber optic network, which Confluence Networks is about to launch, as the core part of its global network. The protocol will last for...

    2024-05-24
    Çeviriyi gör
  • Sweden's powerful laser system generates ultra short laser pulses

    For the first time, researchers at Umeå University, Sweden, have demonstrated the full capabilities of their large-scale laser facility. The team reports generating a combination of ultrashort laser pulses, extreme peak power, and precisely controlled waveforms that make it possible to explore the fastest processes in nature.Umeå’s laser is 11 m long and generates very short pulses László Vei...

    08-20
    Çeviriyi gör
  • FGI utilizes Fraunhofer's LiDAR technology for maritime surveying

    The highly respected Finnish Institute of Geospatial Studies will utilize the advanced LiDAR system developed by the Fraunhofer Institute of Physical Measurement Technology for future ocean surface surveys. Significant progress is expected in data quality and on-site measurement efficiency, and the state-owned research department is collaborating with Fraunhofer IPM on a joint project. They are jo...

    2024-02-14
    Çeviriyi gör
  • Shanghai Optical Machine has made progress in frequency shift of even harmonic of single layer MoS2

    Recently, the research team of the State Key Laboratory of High-Field Laser Physics at the Shanghai Institute of Optics and Fine Mechanics of the Chinese Academy of Sciences has made progress in using high-field lasers to drive the even harmonic frequency shift of single-layer MoS2. The results were published in Optics Express under the title "Frequency shift of even-order high harmonic generation...

    2023-09-07
    Çeviriyi gör