Black hole powers “cosmic flashlight” illuminating the cosmic web
Quranic verse
“And verily We have beautified the world’s heaven with lamps, and We have made them missiles for the devils, and for them We have prepared the doom of flame” (Quran 67:5)
Scientific News

“The light from the quasar is like a flashlight beam, and in this case, we were lucky that the flashlight is pointing right at the cosmic web, making some of its gas glow,” said Sebastiano Cantalupo from the University of California, Santa Cruz. Using the 10-meter Keck I Telescope at the W. M. Keck Observatory in Hawaii, the researchers were able to capture an image of the fluorescently glowing cosmic web with the help of a custom-made filter. Fluorescent light reaching us from the targeted portion of the cosmic web has a specific characteristic color — and only this color is transmitted by the filter.
The hydrogen gas in intergalactic space has been indirectly studied for decades using a different and much more restricted technique that probes the cosmic web along a single line only — the line joining a distant background quasar with an observer here on Earth. But this method could never reveal the spatial structure of the cosmic web.
“This is the first time anyone has been able to capture an image of the cosmic web, demonstrating its filamentary structure,” said Fabrizio Arrigoni Battaia from the Max Planck Institute for Astronomy in Heidelberg, Germany. The region of the cosmic web visible on the image measures roughly 2 million light-years across.
Such observations can be used to test supercomputer models that simulate the formation of cosmic structures from the Big Bang to the present. Indeed, the new discovery provides evidence that key elements might be missing from current simulations: The amount of cool gas inferred from the image of the cosmic web appears to be substantially larger than predicted.
“If you want to know how galaxies form, you first need to understand their fuel supply, which comes from the cosmic web,” said Joseph Hennawi from the Max Planck Institute for Astronomy. “These new observations are challenging our understanding, as they suggest a large amount of gas is contained in small dense clumps, which is not currently present in our models. Resolving this tension will clearly teach us something very important.”












