Español

On demand ultra short laser flash: controllable optical pulse pairs from a single fiber laser

761
2024-01-12 13:56:39
Ver traducción

Set up a dual comb fiber laser oscillator, external pulse combination, and real-time detection.
In innovative methods for controlling ultra short laser flashes, researchers from Bayreuth University and Konstanz University are using soliton physics and two pulse combs in a single laser. This method has the potential to greatly accelerate and simplify laser applications.

Traditionally, the pulse interval of a laser is set by dividing each pulse into two pulses and delaying them at different mechanically adjustable distances. Alternatively, two laser sources with slightly different orbital periods ("double combs") can be used to generate rapid travel delays from the superposition of two pulse combs.

Professor Georg Herink, the leader of the Experimental Physics VIII - Ultra Fast Dynamics group at Bayreuth University, and his doctoral student Julia A. Lang collaborated with Professor Alfred Leinstorfer and Sarah R. Hutter from the University of Constance to demonstrate a pure optical method based on two pulse combs in a single laser. It can achieve extremely fast and flexible adjustable pulse sequences.

Meanwhile, this can be achieved in very compact fiberglass light sources. By combining two pulse combs outside the laser, researchers have obtained a pulse mode that can be set with any delay as needed.

The researchers used a technique: two pulses circulate in the laser instead of the usual single light pulse. "There is enough time between two pulses to apply a single 'interference' using the fast optical switch inside the laser," explained Lang, the first author of the study. "Using laser physics, this' intracavity modulation 'causes a change in pulse velocity, causing two pulses to move towards each other in time."

The laser source based on fiberglass was built by Hutter and Leitenstorfer from the University of Constance. Thanks to a special real-time measurement method, researchers at Bayreuth can now accurately observe how short light pulses (called solitons) move when external influences act on them. This real-time spectral interferometry method can accurately measure the distance between each pair of pulses - over 10 million times per second.

"We have demonstrated that we can quickly adjust time over a wide range and achieve freely programmable motion forms," explained Herink. The research now published in Progress in Science proposes an innovative method for controlling solitons, which not only provides new insights into soliton physics, but also opens up possibilities for the rapid and efficient application of ultra short laser pulses.

Source: Laser Net

Recomendaciones relacionadas
  • Samsung Heavy Industries Developing a Laser High Speed Welding Robot for Liquefied Natural Gas Ships

    South Korea's Samsung Heavy Industry announced on Thursday that it has developed the first laser high-speed welding robot in the maritime field, aimed at significantly improving the construction efficiency of liquefied natural gas (LNG) transport ships.This new technology is specifically designed for rapid welding of thin film panels used in cargo compartments of liquefied natural gas transport sh...

    2023-09-22
    Ver traducción
  • Snapmaker Announces Its First Dedicated Laser Cutter, the Ray, in 20w and 40w Flavors

    Snapmaker has been making three-in-one manufacturing tools -- The Snapmaker, Snapmaker 2 and Artisan -- for over six years now. These machines have changeable tool heads that can be used for 3D printing, laser cutting and CNC machining. At the beginning of this year, it branched out to make adedicated 3D printer, the J1-- a dual print-head machine that works very well -- and today the ...

    2023-08-28
    Ver traducción
  • NASA Completely Transforms Laser Communication and Space Weather Research

    NASA is a pioneer in space research, once again attracting the attention of the world with fascinating insights. In a recent press release, NASA announced plans to test revolutionary laser communication systems and study the interaction between Earth and space weather.A Great Leap in Space Communication: ILLUMA-TThe SpaceX 29 mission, scheduled for November 5th, will conduct research and technical...

    2023-10-23
    Ver traducción
  • Low noise! Switzerland develops a new type of laser

    According to foreign media reports, scientists from the Physics Research Institute and the Institute of Physics and the Center for Quantum Science and Engineering at the Swiss Federal Institute of Technology Lausanne (EPFL) in Lausanne, Switzerland have made a new progress in the field of excitation science, developing a smaller and quieter laser system than previous products.Small laser system (I...

    2024-07-03
    Ver traducción
  • Processing application of ultrafast laser on bulk metallic glass

    Recently, an international research team led by Professor Zhang Peilei from the School of Materials Science and Engineering at Shanghai University of Engineering and Technology published a review paper titled "Research status of femtosecond lasers and nanosecond lasers processing on bulk metallic glasses (BMGs)" in the renowned journal Optics&Laser Technology in the field of optics and lasers....

    2023-09-18
    Ver traducción