Dark Matter
Dark Matter, as part of Space Technology within the broader context of Space Science and Science, refers to the hypothetical form of matter thought to account for approximately 85% of the matter in the universe. Despite its significant role, dark matter remains elusive due to its lack of interaction with electromagnetic force, making it invisible and undetectable through current technology. However, its existence is inferred through gravitational effects on visible matter, radiation, and the large-scale structure of the universe. Research in this area involves theoretical physics, computational simulations, and experimental particle physics to develop advanced detection techniques that may one day shed light on the nature and properties of dark matter.
External Links
- [dance.rice.edu] October 28th 29th, 2019. DANCE: Dark-matter And Neutrino Computation Explored. | A workshop on the computational aspects (analysis tools, machine learning, distributed computing, data acquisition) of current direct-detection dark matter experiments and medium-sized neutrino experiments.
- [lz.lbl.gov] The LZ Dark Matter Experiment | The status and science of the LZ dark matter experiment.
- [darwin.physik.uzh.ch] DARWIN - Dark Matter WIMP Search With Liquid Xenon
- [xenon1t.org] XENONnT experiment – Direct Search for Dark Matter with Liquid Xenon Deep Underground at the Laboratori Nazionali del Gran Sasso