Türkçe

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

460
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
  • EO Technologies from South Korea enters the glass substrate processing market

    Recently, EO Technologies, a well-known semiconductor laser processing equipment manufacturer in South Korea, is emerging in the glass substrate processing market.It is understood that EO Technologies is entering the glass substrate TGV market based on its UV laser drilling equipment originally used in PCB substrate technology. TGV technology is the core process for drilling holes inside glass sub...

    2024-06-18
    Çeviriyi gör
  • Scientists from the SLAC National Accelerator Laboratory in the United States have launched the world's most powerful X-ray laser

    Scientists at the SLAC National Accelerator Laboratory have launched the world's most powerful X-ray laser, which will be used for in-depth atomic and molecular research.It is a significant upgrade to its predecessor, as its brightness has increased by 10000 times.The upgraded laser facility also uses superconducting accelerator components, allowing it to operate at low temperatures near absolute ...

    2023-11-17
    Çeviriyi gör
  • The Boston University research team developed a high-throughput single-cell sorting technique based on stimulated Raman spectroscopy

    A Boston University research project has successfully developed an innovative single-cell sorting technique that uses stimulated Raman spectroscopy to replace traditional fluorescent labeling and achieve labeling free and non-destructive single-cell measurements. This technology is expected to have a profound impact in the fields of cytology, microbiology and biomedical research, allowing scienti...

    2023-09-07
    Çeviriyi gör
  • Topological high-order harmonic spectroscopy in Communications Physics

    It is reported that researchers from the University of Salamanca in Spain have demonstrated a high-order harmonic spectroscopy scheme generated by the interaction between a structured driving beam and a crystal solid target. This work promotes the topological analysis of high-order harmonic fields as a spectroscopic tool to reveal nonlinearity in the coupling of light and target symmetry. The rele...

    2024-01-15
    Çeviriyi gör
  • Ultra fast laser nova PulseX Laser completes over 10 million yuan of financing

    PulseX Laser, a rising star in the field of ultrafast lasers, has recently completed a financing of over 10 million yuan, with this round of financing exclusively invested by Changlei Capital.As a representative of the forefront of technology today, ultrafast lasers play an important role in many industries. In the field of material processing, ultrafast lasers, with their ultra short pulse width ...

    2024-07-09
    Çeviriyi gör