Français

Laser beam combined with metal foam to produce the brightest X-ray

836
2025-01-18 11:00:26
Voir la traduction

According to the Physicists' Network, scientists from Lawrence Livermore National Laboratory (LLNL) in the United States ingeniously combined the high-power laser emitted by the National Ignition Facility (NIF) with the ultra light metal foam to create the brightest X-ray ever. These ultra bright high-energy X-rays play an important role in many research fields, including imaging of extremely dense matter (including plasma generated during inertial confinement fusion). The relevant research paper was published in the latest issue of Physical Review E.

The laser generated by NIF overlaps the millimeter level cylindrical silver foam target to create high-energy X-ray. Image source: Lawrence Livermore National Laboratory

The team explained the process of creating this type of X-ray: a high-power laser beam collides with silver atoms, exciting plasma and generating X-rays. The higher the atomic number of a metal atom, the higher the X-ray energy it produces.

To produce X-rays with energies higher than 20000 electron volts, the team chose metallic silver in the experiment. Since the foam structure of metal is crucial for creating high-energy X-ray, they used molds and silver nanowires to create a cylindrical target with a diameter of 4mm and a height of 4mm.

The team first freezes the nanowires suspended in the mold solution, then uses supercritical drying technology to remove the solution, and finally leaves low-density porous silver metal foam. The density of this silver foam structure is only one thousandth of that of solid silver.
This foam structure has many advantages: the laser emitted by NIF can heat a larger volume of foam material, and the heat transmission speed is far faster than that in solids. The entire silver foam cylinder was heated by a laser beam in about 1.5 billionths of a second, thus producing the brightest X-ray so far.

In addition to creating the X-ray source, the team also made in-depth exploration on a variety of different foam materials to determine which foam can provide the maximum energy output. Meanwhile, they also employed a novel data analysis technique to understand the physical properties of the generated plasma.

Source: Yangtze River Delta Laser Alliance

Recommandations associées
  • High sensitivity visualization of ultrafast carrier diffusion using a wide field holographic microscope

    A sketch of the imaging and holographic parts of a transient holographic microscope, including a pulse sequence, to illustrate the signal modulation method. By imaging the pinhole array at the sample position, a diffraction limited excitation spot array can be created, allowing for the simultaneous collection of transient data around 100 excitation spots.Femtosecond transient microscopy is an impo...

    2023-12-25
    Voir la traduction
  • Harvard University and University of Vienna invented tunable laser chips

    Researchers at the Harvard John A. Paulson School of Engineering and Applied Sciences (SEAS) and Vienna University of Technology (TU Wien) have invented a new type of tunable semiconductor laser that shows smooth, reliable, wide-range wavelength tuning in a simple, chip-sized design.Tunable lasers are integral to many technologies, from high-speed telecommunications to medical diagnostics to safet...

    07-16
    Voir la traduction
  • Lockheed Martin announces expansion of 16000 square feet 3D printing center

    Recently, US military industry giant Lockheed Martin announced that it will significantly increase its additive manufacturing capabilities and expand its factory in Texas. The expansion project includes approximately 16000 square feet of dedicated space for 3D printing technology, and the addition of some of the largest large format multi laser printers in the space (it is worth noting that Lockhe...

    2024-12-02
    Voir la traduction
  • The breakthrough of coherent two-photon lidar overcomes distance limitations

    Schematic diagram of experimental setupNew research has revealed advances in light detection and ranging technology, providing unparalleled sensitivity and accuracy in measuring the distance of distant objects.This study was published in the Physical Review Letters and was the result of a collaboration between Professor Yoon Ho Kim's team at POSTECH in South Korea and the Center for Quantum Scienc...

    2023-12-08
    Voir la traduction
  • Multi functional materials for solar cells and organic light-emitting diodes to achieve high performance and stability

    Through joint research, a team developed a 4-amino-TEMPO derivative with photocatalytic performance and successfully used it to produce high-performance and stable fiber like dye sensitized solar cells (FDSSCs) and fiber like organic light-emitting diodes (FOLEDs). This paper was published in the journal Materials and Energy Today.The developed 4-amino-TEMPO derivatives have the characteristic of ...

    2024-06-03
    Voir la traduction