繁体中文

Toronto research has discovered 21 new sources of organic solid-state lasers

147
2024-05-22 14:15:17
查看翻譯

Organic solid-state lasers (OSLs) are expected to achieve widespread applications due to their flexibility, tunability, and efficiency. However, they are difficult to manufacture and require over 150.000 possible experiments to find successful new materials, and discovering them will be a work of several lifetimes. In fact, according to data from the University of Toronto in Canada, only 10-20 new OSL materials have been tested in the past few decades.

Now, researchers from the university's acceleration alliance have accepted this challenge and used Autonomous Driving Laboratory (SDL) technology. Once established, they can synthesize and test over 1000 potential OSL materials and discover at least 21 OSL gain candidate materials within a few months.

SDL uses artificial intelligence and robot synthesis to simplify the process of identifying new materials. In this case, the new materials exhibit excellent laser properties. The Toronto team stated that so far, SDL is typically limited to one physics laboratory in one geographical location.

This work was described in a paper titled "Discovery of delocalized asynchronous closed-loop of organic laser emitters" in the journal Science. In this study, laboratories from Toronto and Vancouver, Canada, Glasgow, Scotland, Illinois, USA, and Fukuoka, Japan were all involved.

Each laboratory can contribute its professional knowledge and resources. This decentralized workflow is managed by a cloud based platform, which not only improves efficiency but also allows for rapid replication of experimental results, ultimately democratizing the discovery process and accelerating the development of next-generation laser technology.

"This paper demonstrates that closed-loop methods can be delocalized, and researchers can accelerate the discovery of materials in the early stages of commercialization from molecular states to devices," said Dr. Al á n Aspuru Guzik, Director of the Acceleration Alliance.
"The team designed an experiment from molecules to devices, with the final equipment manufactured in Japan. They were scaled up in Vancouver and then transferred to Japan for characterization," he said.

The discovery of these new materials represents a significant advancement in the field of molecular optoelectronics. It paves the way for the performance and functional enhancement of OSL devices, and sets a precedent for future delocalized discovery activities in the fields of materials science and autonomous driving laboratories.

Toptica launches FemtoFiber ultra series lasers
Laser developer Toptica has launched the FemtoFiber Ultra series, the company's "next-generation femtosecond fiber laser" designed specifically for multiphoton microscopy, two-photon lithography, and semiconductor detection.

With over 20 years of experience in developing OEM grade fiber lasers, Toptica has created a turnkey, fully integrated, and optimized laser system that provides excellent performance and reliability for the most demanding scientific and industrial applications in the biotechnology and semiconductor industries.

The FemtoFiber ultra series offers unparalleled accuracy and consistency, delivering high average power, excellent temporal and spatial beam quality, and femtosecond pulses in a compact and sturdy package.

This industrial grade optical engine is designed to withstand the harsh conditions of advanced imaging and micro/nano processing, making it an ideal choice for high-end applications. Its seamless operation and low cost of ownership make it a multifunctional solution, enabling researchers and manufacturers to explore new fields of multiphoton microscopy and semiconductor detection.

Luisa Hofmann, Product Manager for Biophotonics and Materials at Toptica, commented, "We designed these lasers to meet the ever-changing needs of our customers, providing them with powerful tools to deliver consistent results while minimizing downtime and costs, with output wavelengths of 780, 920, and 1050 nm.".

Source: Laser Net

相關推薦
  • Shanghai Photonics Corporation has made progress in laser welding of structural materials (Ni-28W-6Cr alloy) for new-generation molten salt reactors

    Recently, Yang Shanglu, a researcher at the Laser Intelligent Manufacturing Technology Research and Development Center of Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made new progress in laser welding of the fourth-generation reactor-molten salt reactor structural material Ni-28W-6Cr nickel-based superalloy.The research team applied the high power fiber ...

    2023-08-25
    查看翻譯
  • Sivers Semiconductors, an optoelectronic semiconductor company, splits off its photonics business and goes public independently

    Recently, Sivers Semiconductors, a leading supplier of integrated chips and photonics modules for communication and sensing solutions, announced a significant strategic initiative:It will divest its subsidiary Sivers Photonics Ltd, which has signed a non binding letter of intent (LOI) with byNordic Acquisition Corporation and plans to achieve independent listing through a merger. This move aims ...

    2024-08-26
    查看翻譯
  • The "white" laser device from startup Superlight Photonics will completely transform imaging

    Superlight Photonics, a start-up company headquartered in Enshurd, has developed a broadband laser chip that can replace the bulky and power consuming technology currently used in advanced imaging and metering equipment.This idea suddenly appeared in his mind, while moving his other belongings from Germany to his new home in Enschede. During his doctoral research at the Max Planck Institute of Mul...

    2023-10-28
    查看翻譯
  • Zygo showcases 3D optical metrology instruments on Space Comm

    Zygo Corporation, a business unit of AMETEK, announced that it will be showcased at the D28 booth of the Space Comm Expo held in Farnborough, UK from March 6th to 7th this year.Space Comm showcases the end-to-end supply chain of products, services, and applications that provide information and technological development for commercial aerospace enterprises, governments, and defense organizations, p...

    2024-03-01
    查看翻譯
  • Photonic hydrogel of high solid cellulose with reconfigurability

    Recently, Qing Guangyan, a researcher team from the Research Group on Bioseparation and Interface Molecular Mechanism (1824 Group) of Biotechnology Research Department of Dalian Institute of Chemical Physics, Chinese Academy of Sciences, designed and prepared a highly solid cellulose photonic hydrogel with reconfigurability and mechanical discoloration. This preparation method opens up a new way t...

    02-17
    查看翻譯