日本語

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

212
2023-10-07 16:48:45
翻訳を見る

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

関連のおすすめ
  • Tiny yet Powerful: How Lasers on Chips Change the Game Rules of Photonics

    Chip level ultrafast mode-locked laser based on nanophotonic lithium niobate.Researchers have created a compact mode-locked laser integrated into a nanophotonic platform, capable of generating high-power and ultrafast optical pulses. The breakthrough in miniaturization of MLL technology can significantly expand the application of photonics.Innovation in mode-locked laser technologyTo improve the t...

    2023-12-27
    翻訳を見る
  • Surface coupled laser technology manufacturer, secured £ 2.94 million in financing

    Recently, renowned surface coupled laser technology supplier Vector Photonics announced that it has received £ 1.667 million in equity investment and £ 1.27 million in additional research funding for the continued commercialization of its unique surface coupled laser (SCL) technology. Surface coupled lasers have completely changed semiconductor laser manufacturing, improving the performance of var...

    2024-06-14
    翻訳を見る
  • Real time measurement of femtosecond dynamics of relativistic intense laser driven ultra-hot electron beams

    In the interaction between ultra short and ultra strong laser and matter, electrons with short pulse width and high energy are generated, commonly referred to as "hot electrons". The generation and transport of hot electrons is one of the important fundamental issues in high-energy density physics of lasers. Superhot electrons can excite a wide range of ultrafast electromagnetic radiation, as well...

    2024-04-30
    翻訳を見る
  • Shanghai Optics and Machinery Institute has made progress in near-field state analysis of high-power laser devices based on convolutional neural networks

    Recently, the research team of the High Power Laser Physics Joint Laboratory of the Chinese Academy of Sciences Shanghai Institute of Optics and Fine Mechanics identified and analyzed the abnormal near-field output of the SG - Ⅱ upgrade device by using the spatial domain computing method and the deep learning model with attention mechanism in response to the requirements of real-time and effective...

    2024-04-25
    翻訳を見る
  • Laser ablation helps to trace the origin of medieval metals

    Archaeologists have long wondered why the people of Anglo Saxon England began using more silver coins and fewer gold coins between 660 and 750 AD. Researchers in Europe now say they have developed a method to help find the answer. This technology combines laser ablation with traditional trace element analysis to match the isotopic abundance of silver bars in coins with known sources of metal ores ...

    2024-04-13
    翻訳を見る