Türkçe

Beyond Limits: The Amazing Power of Water in Laser Development

191
2024-02-26 14:20:25
Çeviriyi gör

Water helps to generate ultra continuous white lasers with an extremely wide wavelength range.
Researchers have made significant progress in creating ultra wideband white laser sources, which have a wide wavelength range from ultraviolet to far-infrared. These advanced lasers are used in various fields, including imaging, femtosecond chemistry, telecommunications, laser spectroscopy, sensing, and ultrafast science.


Intense white laser projects a brilliant rainbow
However, this pursuit faces challenges, especially in selecting suitable nonlinear media. Although traditional solid materials are efficient, they are susceptible to optical damage under peak power conditions. Although gas media have resistance to damage, they are usually inefficient and technically complex.

Innovative solutions using water as a nonlinear medium
Researchers from South China University of Technology have recently taken non-traditional measures to treat water as a nonlinear medium. Water is abundant and inexpensive, and can be protected from optical damage even under the influence of high-power lasers. As reported in the Journal of Advanced Photonics in the Golden Open Access journal, water induced spectral broadening involves enhanced self phase modulation and stimulated Raman scattering, resulting in a supercontinuum white laser with a bandwidth of 435nm and 10dB, covering an impressive range of 478-913nm.

Progress in Cooperation between Water and CPPLN
To further innovate, researchers combined water with chirped periodically polarized lithium niobate (CPPLN) crystals, which are known for their powerful second-order nonlinear power. This cooperative relationship not only expands the frequency range of supercontinuum white laser, but also flattens its output spectrum. According to Professor Zhi Yuan Li, the senior author of the study, "The cascaded water CPPLN module provides a long lifespan, high stability, and low cost technical route for achieving 'three high' white lasers with strong pulse energy, high spectral flatness, and ultra wide bandwidth."

The results of the water CPPLN cooperation are expected. The pulse energy of this ultra wideband ultra continuous spectrum light source is 0.6 mJ, with a 10 dB bandwidth spanning one octave (413-907nm), and it has potential in ultrafast spectroscopy and hyperspectral imaging. Zhi Yuan Li observed, "It provides high resolution of physical, chemical, and biological processes at extreme spectral bandwidths with high signal-to-noise ratio. It opens up an efficient pathway to create long-lived, highly stable, and cost-effective white light lasers with strong pulse energy, high spectral flatness, and ultra wideband, paving the way for new possibilities in scientific research and application."

Source: Sohu

İlgili öneriler
  • Westlake University has made significant breakthroughs in the field of flexible stacked solar cells

    Recently, the team led by Wang Rui from the Future Industry Research Center and the School of Engineering at Xihu University has made significant breakthroughs in the field of flexible stacked solar cells. They have successfully stacked perovskite and copper indium gallium selenide materials together, resulting in a photoelectric conversion efficiency of 23.4%. The related research paper was recen...

    02-05
    Çeviriyi gör
  • Electron beam welding process for thick steel plate of turbine at Aachen Institute of Technology in Germany

    Researchers from the Welding Research Institute of Aachen University of Technology in Germany reported on the development of a stable welding process for electron beam welding of thick plates used in the construction of offshore wind turbines. The relevant research results were published in Materials Science and Engineering Technology under the title "Development of a robust welding process for el...

    2024-07-09
    Çeviriyi gör
  • Free space nanoprinting beyond optical limitations can create 4D functional structures

    Two photon polymerization is a potential method for nanofabrication of integrated nanomaterials based on femtosecond laser technology. The challenges faced in the field of 3D nanoprinting include slow layer by layer printing speed and limited material selection due to laser material interactions.In a new report in Progress in Science, Chenqi Yi and a team of scientists in the fields of technical s...

    2023-10-09
    Çeviriyi gör
  • Xi'an Institute of Optics and Fine Mechanics has made new progress in the field of metasurface nonlinear photonics

    Recently, the Research Group of Nonlinear Photonics Technology and Applications in the State Key Laboratory of Transient Optics and Photonics Technology of Xi'an Institute of Optics and Fine Mechanics has made important progress in the field of super surface nonlinear photonics. Relevant research results were published in the internationally famous journal Nanoscale Horizons. The first author of t...

    2024-09-27
    Çeviriyi gör
  • GeoCue introduces three new TrueView 3D imaging systems

    Earlier this month, GeoCue, a liDAR mapping hardware and software provider, announced the launch of three new products for its TrueView 3D imaging system. These new systems combine laser scanning and high-resolution imaging, including the TV625, TV680 and TV680LR. All three systems are NDAA-compliant.All three systems are designed to be used in conjunction with drones, and the company note...

    2023-08-04
    Çeviriyi gör