日本語

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

596
2025-01-18 11:00:26
翻訳を見る

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

関連のおすすめ
  • Overview of Residual Stress in Metal Additive Manufacturing: Detection Techniques, Numerical Simulation, and Mitigation Strategies

    Researchers from Shantou University have reported a review of residual stresses in metal additive manufacturing: detection techniques, numerical simulations, and mitigation strategies. The relevant paper titled "A comprehensive review of residual stress in metal additive manufacturing: detection techniques, numerical simulations, and mitigation strategies" was published in the Journal of the Brazi...

    2024-12-20
    翻訳を見る
  • A Large Angle Color Holographic 3D Display System Based on Color LCD Grating

    Holographic display technology provides the ultimate solution for true 3D display, with enormous potential in augmented reality and virtual reality. However, the color and viewing angle of holographic 3D displays mainly depend on the wavelength of the laser and the pixel size of the current spatial light modulator. The inevitable color difference and narrow viewing angle in conventional systems se...

    2024-01-24
    翻訳を見る
  • The research team establishes synthetic dimensional dynamics to manipulate light

    In the field of physics, the synthetic dimension has become one of the forefront of active research, providing a way to explore phenomena in high-dimensional space, surpassing our traditional 3D geometric space. This concept has attracted great attention, especially in the field of topological photonics, as it has the potential to unlock rich physics that traditional dimensions cannot reach.Resear...

    2024-03-20
    翻訳を見る
  • The estimated output value of the LiDAR market in 2029 is expected to reach 5.352 billion US dollars

    Market research firm TrendForce Consulting released an industry insight report today, stating that currently LiDAR is mainly used in the automotive market for passenger cars and unmanned taxis, while in the industrial market it supports applications such as robotics, factory automation, and logistics.The report points out that driven by Level 3 and more advanced auto drive system system and logist...

    01-22
    翻訳を見る
  • Aerosol jet printing can completely change the manufacturing of microfluidic devices

    Surface acoustic wave technology is renowned for its high precision and fast driving, which is crucial for microfluidics and affects a wide range of research fields. However, traditional manufacturing methods are time-consuming, complex, and require expensive cleanroom facilities.A new method overcomes these limitations by utilizing aerosol jet printing to create customized equipment with various ...

    2024-02-02
    翻訳を見る