Français

Short pulse lasers in the form of chips use the so-called mode coupling principle

104
2023-11-10 14:56:31
Voir la traduction

Nowadays, lasers that emit extremely short flashes can be found in many research laboratories, but they usually fill the entire room. Physicists have now successfully reduced this laser to the size of a computer chip. As they reported in the journal Science, their research can lay the foundation for extremely compact detectors.

A team led by Qiushi Guo from the California Institute of Technology in Pasadena has constructed their prototype semiconductor for short pulse lasers based on gallium arsenide, which is used to generate laser beams. They combined it with a crystal of another compound called lithium niobate, which is used as a conductor for light waves. Researchers arranged these two components on the basis of silicon and silicon dioxide to produce laser chips with a size of only a few millimeters.

Like other short pulse lasers, the new micro laser uses the so-called mode coupling principle: the light waves in the laser match each other in a mutually amplified manner, resulting in extremely short light pulses. Researchers successfully achieved this by applying high-frequency electric fields adapted to laser pulses. Previously, larger short pulse lasers also used this principle. But in the new laser, they cleverly arranged tiny waveguides so that they could keep the laser correspondingly small.

Trillionths of a second of short infrared flash
In testing, the prototype emitted short flashes of less than five picoseconds - millionths of a second infrared light. Their wavelength was 1065 nanometers and they repeated about 10 billion times per second. When doing so, the maximum power of the laser is half a watt, which is 500 times that of a traditional laser pen.

In the future, micro lasers can pave the way for small detectors, such as detecting bacteria and viruses in smartphones. They reflect the incident laser in a unique way, so they can be detected using highly sensitive sensors. Other applications lie in chips that use light to process digital data, making them faster than other systems. Even atomic clock lasers can be used in chip form. These can achieve accurate navigation without GPS signal, "Guo said. Considering these applications, researchers now hope not only to further increase the power of short pulse lasers, but also to make the optical pulses shorter - as low as a few femtoseconds.

Source: Laser Network

Recommandations associées
  • Breaking the limits of optical imaging by processing trillions of frames per second

    Pursuing higher speed is not just exclusive to athletes. Researchers can also achieve such feats through their findings. The research results of Professor Liang Jinyang and his team from the National Institute of Science (INRS) have recently been published in the journal Nature Communications.The team located at the INRS É nergie Mat é riaux T é l é communications resea...

    2024-04-08
    Voir la traduction
  • Chinese researchers have developed for the first time a room temperature HoYLF thin film laser

    In a study published in Optics Express, the research team led by Professor Fu Yuxi of the Xi'an Institute of Optics and Precision Mechanics (XIOPM) of the Chinese Academy of Sciences developed the room temperature holmium doped lithium yttrium fluoride (Ho: YLF) composite thin slice laser for the first time, which can achieve high efficiency and high-quality CW laser output.Laser devices operating...

    02-21
    Voir la traduction
  • Efficient implementation of laser welding automation using modern measurement technology

    Ensuring the integrity and quality of the welded hair clip is crucial in the assembly of electric motors. Usually, 160 to 220 hair clips are welded to each motor, and the accuracy of these welds directly affects the overall quality of the stator and motor. The traditional method of detecting these welds is difficult to balance the requirements of safety and accuracy, which often leads to damage to...

    2024-06-13
    Voir la traduction
  • Tsinghua University develops efficient and stable perovskite quantum dot deep red light devices

    Semiconductor quantum dots have the advantages of high quantum yield, narrow emission spectrum, and compatibility with solution processes. They have shown broad application prospects and enormous economic value in the field of optoelectronic materials and devices, and related research has won the Nobel Prize in Chemistry in 2023.Compared with traditional II-VI and III-V quantum dots (such as CdSe,...

    03-18
    Voir la traduction
  • A replica of an arcade made with a 3D printer in the 1970s

    A game museum has 3D printed a replica of a historic arcade computer space. The arcade museum in Stroud, Gloucestershire lacks the first commercial arcade video game. They collaborated with Heber company to create a real replica. Neil Thomas, the director of the arcade museum, said that because it is a replica, not an original, they are not "afraid" of letting people play with it.A spokesperson...

    2024-05-29
    Voir la traduction