Nederlands

Fundamentals of Next Generation Photonic Semiconductors: Small Lasers

704
2023-11-13 14:05:18
Bekijk vertaling

This week, an illustration was published on the cover of the international journal Science, showcasing a powerful mode-locked laser emitted from a miniature photonic semiconductor.

A research team led by Alireza Marandi, a professor of electrical engineering and applied physics at the California Institute of Technology, has successfully developed a conventional mode-locked laser large enough to fit into microchips, which was published in the journal Science on the 9th local time.

MLL is a laser that generates powerful microwave light. Through microwave light, details of femtosecond and attosecond natural phenomena can now be observed, which were previously unseen.

By using these short laser pulses, microstructure that cannot be observed by an optical microscope can be identified. Imaging can be performed on the internal tissues of cancer lumps and the photosynthesis process in plant leaves. That's why MLL is also known as the foundation of modern accelerator research and technology.

However, so far, MML has only been developed in a cumbersome form, which limits its application in chip level nano optical devices that handle very little light in a very small space.

The research team has developed a "small mode locked laser" based on lithium niobate. The MML developed by the research team works at the nanoscale and measures much higher pulse energy and peak power compared to the MLL used in existing nano optical platforms.

The journal Science published the study on its cover and commented that the development of this technology will reduce the size of existing MLLs to the size of chips, stimulating the development of photonic based semiconductors that surpass existing semiconductor levels.

Photonic semiconductors use light instead of electricity and are considered the next generation technology because they can transmit data tens of times faster than existing devices while reducing power consumption. Especially, it is expected to be combined with artificial intelligence and high-performance sensors to achieve rapid information transmission and reception.

Source: Laser Network

Gerelateerde aanbevelingen
  • The acoustooptic modulation of gigawatt level laser pulses in ambient air can be applied to other optical components such as lenses and waveguides

    An interdisciplinary research group, including the German synchrotron radiation accelerator DESY and the Helmholtz Institute in Jena, Germany, reported that invisible gratings made of air not only are not damaged by lasers, but also maintain the original quality of the beam.The relevant research has been published in Nature Photonics under the title of "Acousto opt modulation of gigawatt scale las...

    2023-10-12
    Bekijk vertaling
  • Researchers use liquid metal and laser ablation to create stretchable micro antennas

    Researchers have developed a new method of making micro stretchable antenna with water gel and liquid metal. These antennas can be used for wearable and flexible wireless electronic devices to provide links between devices and external systems for power transmission, data processing, and communication.Using our new manufacturing method, we have demonstrated that the length of liquid metal antennas...

    2023-09-19
    Bekijk vertaling
  • Romania Center launches the world's most powerful laser

    Are you ready? The signal is out! "In the control room of a research center in Romania, engineer Antonio Toma has activated the world's most powerful laser, which is expected to make revolutionary progress in various fields from the health sector to space. The laser located in the center near the Romanian capital Bucharest is operated by the French company Thales and utilizes the invention of Nobe...

    2024-04-01
    Bekijk vertaling
  • The new generation of special optical fibers is suitable for the application of quantum technology

    Recently, physicists from the University of Bath in the UK have developed a new generation of specialized optical fibers to address the data transmission challenges of the future quantum computing era. This achievement is expected to promote the expansion of large-scale quantum networks. The research results were published in the latest issue of Applied Physics Letters Quantum.The highly anticipat...

    2024-08-02
    Bekijk vertaling
  • Researchers have created an X Lidar lidar to help airports operate during volcanic eruptions

    Engineer and inventor Ezequiel Pawelko is one of the creators of X Lidar, a laser technology that can detect volcanic ash in the atmosphere, draw safe flight paths, and maintain airport operations during volcanic eruptions. Nowadays, he is engaged in other applications such as detecting space debris, monitoring natural resources and fisheries, preventing fires, and drawing radiation and wind maps ...

    2023-12-27
    Bekijk vertaling