X-rays squeeze fuel to generate nuclear fusion energy

Working toward the vision of generating clean energy from nuclear fusion, researchers have successfully imploded fuel capsules by bombarding them with intense x-rays. The results show that the process generates significant fusion and that the implosion method looks capable of generating large-scale energy production.

The process works by bombarding two millimeter (about 1/16th inch) fuel capsules with intense x-rays from Sandia National Laboratories Z-pinch machine. The x-rays, impacting from all directions, cause an implosion that reduces the capsule’s size by a factor of ten (see images). This implosion needs to be symmetrical or else the capsules will break apart and fusion won’t take place. In one set of experiments, a high degree of symmetry has been achieved in the implosion process, indicating that the process might be scaled up to energy production levels. In another set of experiments using the Z-pinch, researchers observed significant production of neutrons, a sign of nuclear fusion.

These successful experiments are an important step toward ignition, the level at which the fusion reaction becomes self-sustaining and excess energy can be drawn from the process for other applications.

Contacts
Tom Mehlhorn, Sandia National Labs, 505-845-7266, tamehlh@sandia.gov
John Porter, 505-845-7526, jlporte@sandia.gov

All latest news from the category: Physics and Astronomy

This area deals with the fundamental laws and building blocks of nature and how they interact, the properties and the behavior of matter, and research into space and time and their structures.

innovations-report provides in-depth reports and articles on subjects such as astrophysics, laser technologies, nuclear, quantum, particle and solid-state physics, nanotechnologies, planetary research and findings (Mars, Venus) and developments related to the Hubble Telescope.

Back to home

Comments (0)

Write a comment

Newest articles

New insights into the mechanisms of chromosome segregation errors

Research on centromere structure… Researchers from the Kops group in collaboration with researchers from the University of Edinburgh, made a surprising new discovery in the structure of the centromere, a structure…

“Topological hall effect” in two-dimensional quantum magnets

In a recent study published in Nature Physics, researchers from the Hefei Institutes of Physical Science of the Chinese Academy of Sciences, together with researchers of University of Science and Technology of China, have introduced the…

Coating Technologies of the Future

LZH and Cutting Edge Coatings at Optatec… At Optatec 2024, the Laser Zentrum Hannover e.V. (LZH) and Cutting Edge Coatings GmbH (CEC) present new opportunities in coating technologies for the…

Partners & Sponsors