Türkçe

Scientists at St. Andrews University have made significant breakthroughs in compact laser research

649
2023-10-04 14:21:35
Çeviriyi gör

Scientists at St. Andrews University have made significant breakthroughs in compact laser research after decades of hard work.


Laser is widely used in fields such as communication, medicine, measurement, manufacturing, and measurement around the world. They are used to transmit information on the internet, for medical purposes, and even in facial scanners on mobile phones. Most of these lasers are made of rigid and brittle semiconductor crystals such as gallium arsenide.

Organic semiconductors are a relatively new type of electronic material. They have flexibility, are based on carbon and emit visible light, making the manufacturing of electronic devices simple. They are now widely used in OLED (Organic Light Emitting Diode) screens in most mobile phones.

One limitation of organic semiconductor lasers is that they typically require another laser to power them. For 30 years, researchers have been working hard to overcome this limitation, so scientists at the University of St. Andrews have recently developed an electrically driven organic semiconductor laser, which is particularly important.

The breakthrough achieved by the team, published in the journal Nature, first produced OLEDs with world record light output, and then tightly integrated them with polymer laser structures. This new type of laser emits a green laser beam composed of short light pulses.


At present, this is mainly a scientific breakthrough, but with future development, lasers may be integrated with OLED displays and allow communication between them, or used for spectroscopy to detect diseases and environmental pollutants.

Schematic diagram of the structure of an electrically driven organic semiconductor laser


Professor Ifor Samuel commented, "Manufacturing electrically driven lasers using organic materials is a huge challenge for researchers around the world. Now, after years of effort, we are pleased to have produced this new type of laser.


Professor Graham Turnbull added, "We hope that this new type of laser will consume less energy during the manufacturing process and will produce visible spectrum lasers in the future.

Source: Laser Network

İlgili öneriler
  • Zeiss, a century old optical giant, has established the Optoelectronic Optics Division

    Recently, Carl Zeiss announced on its official website that it plans to launch a new strategic business unit, ZEISS Photonics&Optics, on October 1, 2024, with the aim of providing excellent optoelectronic and optical products and solutions to global customers. It is reported that starting from the 2024/25 fiscal year, Zeiss Group will establish a new business unit focused on optoelectronics...

    2024-05-28
    Çeviriyi gör
  • Researchers develop innovative quantum dot lasers for advanced frequency combs

    Researchers at the University of California, Santa Barbara have made significant breakthroughs in laser technology, introducing a groundbreaking quantum dot mode-locked laser that allows for independent generation of amplitude and frequency modulation combs from a single device. This cutting-edge dual mode laser paves the way for the creation of small-sized and energy-efficient frequency combs for...

    2023-11-17
    Çeviriyi gör
  • New insights into the interaction between femtosecond laser and living tissue

    The N-linear optical microscope has completely changed our ability to observe and understand complex biological processes. However, light can also harm organisms. However, little is known about the mechanisms behind the irreversible disturbances of strong light on cellular processes.To address this gap, the research teams of Hanieh Fattahi and Daniel Wehner from the Max Planck Institute for Photos...

    2024-06-07
    Çeviriyi gör
  • The team led by Gao Chunqing and Fu Shiyao from Beijing University of Technology has made significant breakthroughs in the study of photon angular momentum regulation

    Recently, a team led by Gao Chunqing and Fu Shiyao from the School of Optoelectronics at Beijing University of Technology combined optical spatial coordinate transformation with photon spin Hall effect to construct a photon angular momentum filter for the first time internationally, achieving on-demand regulation of photon spin angular momentum and orbital angular momentum.The related achievements...

    2023-10-20
    Çeviriyi gör
  • Munich Shanghai Light Expo and Light Academic Publishing Center further strengthen cooperation

    In November 2024, based on the mutual trust and cooperation over the past years, the Munich Shanghai Optical Expo and the Light Academic Publishing Center of the Changchun Institute of Optics, Precision Mechanics and Physics, Chinese Academy of Sciences (hereinafter referred to as the "Light Center") reached a consensus on further strategic development as they ushered in the year of disruptive sci...

    2024-12-05
    Çeviriyi gör