Deutsch

A new type of electrically driven organic semiconductor laser can be used in the fields of spectroscopy, metrology, and sensing

900
2023-10-07 16:48:45
Übersetzung anzeigen

According to a report from Maims Consulting, scientists at the University of St. Andrews in the UK recently stated that they have made a "significant breakthrough" in the decades of challenges in developing compact organic semiconductor laser technology. 

Firstly, an OLED with a world record light output was manufactured, and then integrated with a polymer laser structure. This new type of laser emits a green laser beam composed of short light pulses.

Structure of electrically driven organic semiconductor lasers
The paper published in the journal Nature explains how the research team at the University of St. Andrews overcomes common organic semiconductor problems such as low current density and intolerable losses caused by injecting charges into the gain medium.
The paper points out that "researchers have achieved loss reduction by developing an integrated device structure that effectively combines OLEDs with extremely high internal light generation capabilities with polymer distributed feedback lasers. Under the electrical driving of the integrated structure, the threshold of light output and driving current can be observed, with a narrow emission spectrum and the formation of a laser beam above the threshold.

The research results provide an organic electronic device that has never been proven before, and indicate that indirect electric pumping of OLEDs is a very effective method for achieving electrically driven organic semiconductor lasers. This provides a method for visible light lasers that can be applied in the fields of spectroscopy, metrology, and sensing.

The conclusion of the paper is: "Researchers have demonstrated an integrated device method that can achieve electrically driven lasers in organic semiconductors, thus solving an important challenge in organic optoelectronics. This method overcomes the main difficulties commonly encountered in direct electrical injection attempts of organic or hybrid perovskite lasers, while retaining operational advantages.

Original link:https://www.eet-china.com/mp/a256224.html

Source: MEMS, Breadboard Community - Core Language

Ähnliche Empfehlungen
  • Accelerating electrons by emitting laser light into a nanophotonic cavity

    The laser driven particle accelerator on silicon chips was created by two independent research groups. With further improvements, this dielectric laser accelerator can be used in medicine and industry, and even in high-energy particle physics experiments.Accelerating electrons to high energy is usually accomplished over long distances in large and expensive facilities. For example, the electron ac...

    2023-10-28
    Übersetzung anzeigen
  • Zeiss Medical Technology nominated for the 2025 German Future Award

    Germany’s Office of the Federal President has announced the nominations for the German Future Prize 2025 (“Deutscher Zukunftspreis”). This year’s nominees include Dr. Mark Bischoff, Dr. Gregor Stobrawa and Dirk Mühlhoff from Zeiss Medical Technology (ZMT), for their project for minimally-invasive lenticule extraction to correct refractive errors. Nominated: Dirk Mühlhoff, Mark Bischoff, and Gr...

    09-22
    Übersetzung anzeigen
  • The advanced laser welding machine has been successfully debugged, helping to make a leap in high-performance battery manufacturing!

    Alexander Battery Technologies, a leading company in the field of battery manufacturing, recently announced that it has successfully debugged the world's most advanced laser welding machine, an innovative initiative that will greatly drive the company's production process.Alexander Battery Technologies, as a company dedicated to supporting original equipment manufacturers in bringing lithium-ion b...

    2024-04-28
    Übersetzung anzeigen
  • LASER CHINA 2025 on-the-Spot, What New Technologies are Trending This Year?

    Every year, Shanghai is lit up with a “feast of light”, that is LASER World of PHOTONICS CHINA, which has lasted for 20 years and become an arena for global photoelectric enterprises to display and compete, instead of just an exhibition hall of devices. Chanelink team visited all these halls for laser technology, thoroughly learning the cutting-edge trends in photoelectric industry.As a technical...

    03-19
    Übersetzung anzeigen
  • China University of Science and Technology has made progress in the study of the regulatory mechanism of thermally induced delayed fluorescence

    Recently, Professor Zhou Meng's research group at the University of Science and Technology of China collaborated with Professor Fu Hongbing's team at the Capital Normal University to reveal the mechanism by which aggregation effects regulate the luminescent properties of thermally delayed fluorescent materials. The research findings, titled "Aggregation Enhanced Thermally Activated Delayed Fluoros...

    2024-06-28
    Übersetzung anzeigen