繁体中文

Aston University is the first to adopt innovative laser detection technology using MEMS mirrors

642
2024-03-07 14:12:54
查看翻譯

The School of Engineering and Physical Sciences at Aston University, located in Birmingham, UK, is at the forefront of exploring innovative laser detection methods and turbulence simulation. The plan revolves around the utilization of micro electromechanical mirrors, which have had a significant impact on various scientific fields over the past two decades.

MEMS reflectors have gained widespread recognition in the commercial field due to their application in digital projection, and are currently at the forefront of pioneering research in optical sensing and communication. The latest project at Aston University aims to leverage the properties of these micro mirror arrays, including their speed, wide spectral bandwidth, and high-power processing capabilities, to advance the development of wavefront control and optical sensing technology. The versatility of these devices has opened up new avenues for research and application, with the potential to completely change the way we manipulate light.

This project not only highlights the potential of MEMS reflectors in traditional fields, but also explores their applicability in new disciplines. Through this special issue, Aston University invites researchers to provide original articles and comments showcasing the widespread utility of micro mirror arrays. This collaboration aims to showcase the innovative applications of these arrays in different fields, emphasizing their transformative impact on optical technology.

Aston University encourages scholars and practitioners to submit their research findings and comments to this special issue. This plan aims to compile a series of comprehensive studies to demonstrate the multifaceted applications of MEMS reflectors. By breaking through existing known boundaries, this project aims to open up new research areas and further consolidate the position of micro mirror arrays as the cornerstone of optical technology innovation.

This effort not only emphasizes the importance of collaborative research in advancing scientific knowledge, but also highlights Aston University's commitment to promoting innovation in the fields of engineering and physical sciences. As the project progresses, significant progress is expected in laser detection, optical sensing, and communication, ultimately contributing to the development of more complex and efficient optical technologies.

Source: Laser Net

相關推薦
  • Advanced optical giant Schott announces completion of Malaysia factory

    Recently, German optical giant SCHOTT is pleased to announce that its advanced production plant located in Gulim, Kedah, Malaysia has been successfully completed. This milestone event was celebrated with the joint witness of employees, clients, and representatives from the Malaysian Investment Development Authority (MIDA).The completion of the new factory marks a significant increase in Schott's...

    2024-10-16
    查看翻譯
  • Breakthrough 8-channel 915nm SMT pulse laser, ushering in a new era of laser radar applications

    The 8-channel 915nm SMT pulse laser can enhance the long-range laser radar system of autonomous vehicle;An 8-channel QFN package certified by AEC-Q102, featuring high performance and efficiency, utilizing proprietary wavelength stabilization technology from AMS Osram;Based on over 20 years of experience in pulse laser technology.Shanghai, China, August 8, 2024- AMS, a leading global optical soluti...

    2024-08-09
    查看翻譯
  • Underwater laser cutting has been achieved with several advantages over common technologies such as saws, automatic wire saws and plasma cutting machines

    Due to the growing demand for renewable energy, the need for modern technologies to dismantle existing underwater infrastructure is also growing.For example, in order to boost the power of an offshore wind farm to a higher level, the existing old steel frame, which may be below sea level, must first be removed so that engineers can rebuild the steel frame for higher power.In laboratory tests, rese...

    2023-09-13
    查看翻譯
  • Researchers use lasers to measure and manipulate magnetic ripple interactions

    One vision for computing the future is to use ripples in magnetic fields as the fundamental mechanism. In this application, magnetic oscillators can be comparable to electricity and serve as the foundation of electronic products.In traditional digital technology, this magnetic system is expected to be much faster than today's technology, from laptops and smartphones to telecommunications. In quant...

    2024-03-05
    查看翻譯
  • Breakthrough in Light Manipulation: Revealing New Finite Barrier Bound States

    Exploring the propagation and localization of waves in various media has always been a core focus of optics and acoustics. Specifically, in photonics and phononics, scientists have been dedicated to understanding and controlling the behavior of light and sound waves in periodic media.Photonic crystals have unique bandgap characteristics, providing an excellent platform for studying wave propagatio...

    2024-03-25
    查看翻譯